<?xml version="1.0"?>
<response><item key="0"><nothing>Fei Yan, Chenxiang Liu, Yu Wang, Xingdong Liu, Aleksandr Solomonov, Mikhail Rybin, Li Li, Hao Tian, "Ultrasensitive Tunable Terahertz Sensor via Critical Coupling&#x2010;Enhanced Fano Resonance", Nanophotonics, vol. 15, 2026, [DOI: 10.1002/nap2.70111] [IF: 8.45, SJR: 2.72]</nothing></item><item key="1"><nothing><![CDATA[Olga Kushchenko, Daniil Litvinov, Grigorii Verkhogliadov, Elena  Bodyago, Dmitry Gets, P.I. Lazarenko, D.Yu. Terekhov, Mikhail Rybin, Anatoly Pushkarev, Vanik Shahnazaryan, A.D. Sinelnik, "Light emission control of perovskite by GeSbTe thin film", Optics &amp; Laser Technology, vol. 202, pp. 115329, 2026, [DOI: 10.1016/j.optlastec.2026.115329] [IF: 4.94, SJR: 0.87]]]></nothing></item><item key="2"><nothing>Aleksandra Kutuzova, Alexey Kuznetsov, Valeriy M. Kondratev, Vladimir V. Fedorov, Ivan Mukhin, Aleksandr S. Slavich, Aleksey V. Arsenin, Alexey Bolshakov, Mikhail Rybin, "Harnessing Interfacial Field Localization in Hexagonal GaP Mie Resonators", Nanophotonics, vol. 15, 2026, [DOI: 10.1002/nap2.70085] [IF: 8.45, SJR: 2.72]</nothing></item><item key="3"><nothing>Nikita Iukhtanov, Roman Savelev, Ilya Volkov, Mikhail Rybin, Mihail Petrov, "Optical isolator based on a subwavelength integrated optical metawaveguide", Applied Physics Letters, vol. 128, 2026, [DOI: 10.1063/5.0315674] [IF: 3.79, SJR: 1.18]</nothing></item><item key="4"><nothing><![CDATA[Kliment Semushev, Zilong Zhao, Andrey Bogdanov, Mikhail Rybin, Ekaterina Maslova, "Modulation of Fabry-Perot Bound States in the Continuum Properties via Symmetry Breaking in Dielectric Photonic Structures", 2025 Photonics &amp;amp;amp; Electromagnetics Research Symposium - Fall (PIERS-Fall), pp. 1-3, 2026, [DOI: 10.23919/piers-fall62445.2025.11393969] ]]></nothing></item><item key="5"><nothing><![CDATA[Nikolai Vlasov, Aleksandr Solomonov, Zarina Sadrieva, Mikhail Rybin, Ekaterina Maslova, "Symmetry-Protected Bound States in the Continuum in $\text{Ge}_{2} \text{Sb}_{2} \text{Te}_{5}$ Strips", 2025 Photonics &amp;amp;amp; Electromagnetics Research Symposium - Fall (PIERS-Fall), pp. 1-4, 2026, [DOI: 10.23919/piers-fall62445.2025.11394306] ]]></nothing></item><item key="6"><nothing><![CDATA[Shicheng Wan, Jinhui Shi, Mikhail Rybin, Ekaterina Maslova, "Robust Metastructures Using Huygens Congener Dipole Elements", 2025 Photonics &amp;amp;amp; Electromagnetics Research Symposium - Fall (PIERS-Fall), pp. 1-4, 2026, [DOI: 10.23919/piers-fall62445.2025.11394194] ]]></nothing></item><item key="7"><nothing>Kliment Semushev, Zilong Zhao, Alexey Proskurin, Mingzhao Song, Xinrui Liu, Mikhail Rybin, Ekaterina E. Maslova, Andrey Bogdanov, "Robustness of bound states in the continuum in bilayer structures against symmetry breaking", Physical Review Applied, vol. 25, pp. 014038, 2026, [DOI: 10.1103/qj87-5xz9] [IF: 4.99, SJR: 1.88]</nothing></item><item key="8"><nothing><![CDATA[Olga Kushchenko, Elena  Bodyago, Daniil Litvinov, Petr Lazarenko, Sergey Kozyukhin, Mikhail Rybin, Dmitry Gets, Artem Sinelnik, "All-Optically Switchable Platform Based on Phase-Change Material for Light-Emitting Device", ACS Applied Materials &amp;amp; Interfaces, vol. 17, pp. 70714-70721, 2025, [DOI: 10.1021/acsami.5c18195] [IF: 9.44, SJR: 2.54]]]></nothing></item><item key="9"><nothing>Ilia M. Fradkin, Nikolay Solodovchenko, Dmitry Filonov, Denis G. Baranov, Mikhail Rybin, Kirill Samusev, Mikhail Limonov, Sergey A. Dyakov, Nikolay A. Gippius, "Quadrupole Mie-resonant metamaterial", Photonics Research, vol. 14, pp. 919, 2025, [DOI: 10.1364/prj.574820] [IF: 7.08, SJR: 2.07]</nothing></item><item key="10"><nothing>Shicheng Wan, Matvey Sogrin, Mikhail Rybin, Jinhui Shi, Ekaterina Maslova, "Engineering of disorder-immune metadevices based on Huygens congener dipole element", Applied Physics Letters, vol. 127, 2025, [DOI: 10.1063/5.0286459] [IF: 3.79, SJR: 1.18]</nothing></item><item key="11"><nothing>Daniil Litvinov, Sofya Isaeva, Olga Kushchenko, Petr I. Lazarenko, Sergey A. Kozyukhin, Mikhail Rybin, Artem Sinelnik, Stanislav Baturin, "Free-Space Orbital Angular Momentum Comb Generation via Second-Harmonic Generation", Nano Letters, 2025, [DOI: 10.1021/acs.nanolett.5c03317] [IF: 11.19, SJR: 4.85]</nothing></item><item key="12"><nothing>Aleksandra Kutuzova, Sergei Li, Binze Ma, Qiang Li, Mikhail Rybin, "Polarization-Independent BIC-Based Electromagnetically Induced Transparency", ACS Photonics, vol. 12, pp. 4289-4295, 2025, [DOI: 10.1021/acsphotonics.5c00547] [IF: 7.53, SJR: 2.74]</nothing></item><item key="13"><nothing>Dmitry A. Kurdyukov, Daniil A. Eurov, Ekaterina Y. Stovpiaga, Demid A. Kirilenko, Maria V. Tomkovich, Maria A. Yagovkina, Mikhail Rybin, Valery G. Golubev, "Novel solid state of silica with ultra-high specific surface area", Materials Today, vol. 88, pp. 146-154, 2025, [DOI: 10.1016/j.mattod.2025.06.006] [IF: 31.04, SJR: 8.07]</nothing></item><item key="14"><nothing>&#x410;&#x43D;&#x434;&#x440;&#x435;&#x439; &#x427;&#x443;&#x435;&#x432;, &#x412;&#x43B;&#x430;&#x434;&#x438;&#x441;&#x43B;&#x430;&#x432; &#x427;&#x438;&#x441;&#x442;&#x44F;&#x43A;&#x43E;&#x432;, &#x410;&#x43B;&#x435;&#x43A;&#x441;&#x430;&#x43D;&#x434;&#x440;&#x430; &#x414;&#x443;&#x434;&#x43D;&#x438;&#x43A;&#x43E;&#x432;&#x430;, &#x410;&#x43D;&#x434;&#x440;&#x435;&#x439; &#x421;&#x430;&#x44F;&#x43D;&#x441;&#x43A;&#x438;&#x439;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x421;&#x438;&#x434;&#x43E;&#x440;&#x435;&#x43D;&#x43A;&#x43E;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, "Highly-directive polymeric quasicrystalline antenna", Optics and Spectroscopy, vol. 133, pp. 766-771, 2025, [DOI: 10.61011/OS.2025.07.61110.7861-25] [IF: 0.84, SJR: 0.28]</nothing></item><item key="15"><nothing>Olga Kushchenko, Daniil Litvinov, Elena  Bodyago, Dmitry Gets, Terekhov D.Yu., P.I. Lazarenko, Mikhail Rybin, Artem Sinelnik, "Defect passivation in GST-perovskite platform using MgO thin film", Optical Materials, vol. 159, pp. 116687, 2025, [DOI: 10.1016/j.optmat.2025.116687] [IF: 3.08, SJR: 0.60]</nothing></item><item key="16"><nothing>Sergey Geyman, Viktor Puchnin, Alexey Slobozhanyuk, Mikhail Rybin, Alena Shchelokova, "Quasi-BIC realized in a subwavelength volumetric split ring-based resonator", Applied Physics Letters, vol. 125, 2024, [DOI: 10.1063/5.0237363] [IF: 3.97, SJR: 1.04]</nothing></item><item key="17"><nothing><![CDATA[Sergei Li, Binze Ma, Qiang Li, Mikhail Rybin, "In‐Plane Metasurface Design for Perfect Chiral Dichroism in Inhomogeneous Environment", Laser &amp; Photonics Reviews, vol. 19, 2024, [DOI: 10.1002/lpor.202400212] [IF: 13.14, SJR: 3.78]]]></nothing></item><item key="18"><nothing>Nikita Iukhtanov, Mikhail Rybin, "Method for achieving magneto-induced non-reciprocity in resonant silicon waveguides with violated mirror symmetry", Journal of Optical Technology, vol. 91, pp. 209, 2024, [DOI: 10.1364/jot.91.000209] [IF: 0.42, SJR: 0.22]</nothing></item><item key="19"><nothing><![CDATA[Aleksandra Kutuzova, Mikhail Rybin, "Improved Ultrasensitive Sensors Based on Bound States in the Continuum", 2024 Photonics &amp;amp; Electromagnetics Research Symposium (PIERS), pp. 1-3, 2024, [DOI: 10.1109/piers62282.2024.10617977] ]]></nothing></item><item key="20"><nothing><![CDATA[Kliment Semushev, Nikolai Vlasov, Aleksandr Solomonov, Andrey Bogdanov, Mikhail Rybin, Zarina Sadrieva, Ekaterina Maslova, "Bound States in the Continuum: Stability Against Structural Disorder", 2024 Photonics &amp;amp; Electromagnetics Research Symposium (PIERS), vol. 49, pp. 1-4, 2024, [DOI: 10.1109/piers62282.2024.10618064] ]]></nothing></item><item key="21"><nothing><![CDATA[Ekaterina Maslova, Kliment Semushev, Mikhail Rybin, "Metamaterial Regime in Quasicrystal Structure", 2024 Photonics &amp;amp; Electromagnetics Research Symposium (PIERS), vol. 10, pp. 1-7, 2024, [DOI: 10.1109/piers62282.2024.10618595] ]]></nothing></item><item key="22"><nothing>Ekaterina Maslova, Vladislav Chistyakov, Mikhail Rybin, "Transport properties of electromagnetic waves in dielectric photonic quasicrystals", Physical Review B, vol. 110, 2024, [DOI: 10.1103/physrevb.110.014202] [IF: 4.04, SJR: 1.78]</nothing></item><item key="23"><nothing>Vladislav Chistyakov, Ruslan Yafyasov, Andrey Sayanskiy, Mikhail Sidorenko, Mikhail Rybin, "Complete photonic bandgap in a low-index two-dimensional quasicrystalline structure", Optics Letters, vol. 49, pp. 3664, 2024, [DOI: 10.1364/ol.528486] [IF: 3.78, SJR: 1.52]</nothing></item><item key="24"><nothing>Viacheslav Korolev, Artem Sinelnik, Mikhail Rybin, Petr Lazarenko, Olga Kushchenko, Victoria Glukhenkaya, Sergey Kozyukhin, Michael Zuerch, Christian Spielmann, Thomas Pertsch, Isabelle Staude, Daniil Kartashov, "Tunable high-order harmonic generation in GeSbTe nano-films", Nanophotonics, 2024, [DOI: 10.1515/nanoph-2023-0859] [IF: 7.92, SJR: 2.12]</nothing></item><item key="25"><nothing>Aleksandr Solomonov, Olga Kushchenko, Kseniya Kasyanova, Sofya Isaeva, Ivan Shishkin, Dmitriy Yu Terekhov, Petr I. Lazarenko, Mikhail Rybin, Stanislav Baturin, Artem Sinelnik, "Switching topological charge of optical vortex by two-dimensional structures", Applied Materials Today, vol. 37, pp. 102135, 2024, [DOI: 10.1016/j.apmt.2024.102135] </nothing></item><item key="26"><nothing>Daniil Litvinov, Olga Kushchenko, Artem Sinelnik, Mikhail Rybin, "Enhancement of perovskite spontaneous emission by phase change materials", Journal of Physics D: Applied Physics, vol. 57, pp. 155103, 2024, [DOI: 10.1088/1361-6463/ad1dbd] [IF: 3.41, SJR: 0.69]</nothing></item><item key="27"><nothing>Ildar Yusupov, Polina Terekhina, Dmitry Filonov, Mikhail Rybin, Alexey Slobozhanyuk, "Quasi-BIC high-index resonators for liquid characterization and analysis", Applied Physics Letters, vol. 123, 2023, [DOI: 10.1063/5.0170786] [IF: 3.97, SJR: 1.03]</nothing></item><item key="28"><nothing>Anna V. Nomin&#xE9;, Ekaterina Gunina, Semyon Bachinin, Aleksandr Solomonov, Mikhail Rybin, Sergei Shipilovskikh, Salah-Eddine Benrazzouq, Jaafar Ghanbaja, Thomas Gries, Stephanie Bruyere, Alexandre Nomine, Thierry Belmonte, "FeAu mixing for high-temperature control of light scattering at the nanometer scale", Nanoscale, vol. 16, 2023, [DOI: 10.1039/d3nr05117j] [IF: 8.31, SJR: 1.74]</nothing></item><item key="29"><nothing>Vladislav Chistyakov, Mikhail Sidorenko, Andrey Sayanskiy, Mikhail Rybin, "Dipole Antenna Directivity Modification by All-Dielectric Quasiperiodic Structure", 2023 Antennas Design and Measurement International Conference (ADMInC), 2023, [DOI: 10.1109/adminc59462.2023.10335387] </nothing></item><item key="30"><nothing>Matvey Sogrin, Mikhail Rybin, Ekaterina Maslova, "Stability of the homogeneous mode in the metamaterial regime with structural disorder", Journal of the Optical Society of America B, vol. 40, pp. 3301, 2023, [DOI: 10.1364/josab.503086] [IF: 1.90, SJR: 0.55]</nothing></item><item key="31"><nothing>Vladislav Chistyakov, Mikhail Sidorenko, Mikhail Rybin, "High Directivity Engineering with Low Index Polymer Quasicrystalline Structures", 2023 Seventeenth International Congress on Artificial Materials for Novel Wave Phenomena (Metamaterials), 2023, [DOI: 10.1109/metamaterials58257.2023.10289371] </nothing></item><item key="32"><nothing>Alexey Dmitriev, Mikhail Rybin, "Eigenmodes and Excitation Geometries of an Optical Dimer", Physics of Particles and Nuclei Letters, vol. 20, pp. 1098-1101, 2023, [DOI: 10.1134/s1547477123050254] [SJR: 0.29]</nothing></item><item key="33"><nothing>Aleksandr Solomonov, Mihail Bochkarev, S. I. Pavlov, P. I. Lazarenko, V. V. Kovalyuk, A. D. Golikov, G. N. Goltsman, S. A. Kozyukhin, S. A. Dyakov, Mikhail Rybin, A. B. Pevtsov, "Ge-Sb-Te based metasurface with angle-tunable switchable response in the telecom bands", Physical Review B, vol. 108, 2023, [DOI: 10.1103/physrevb.108.085127] [IF: 3.91, SJR: 1.54]</nothing></item><item key="34"><nothing>Ekaterina Maslova, Mikhail Rybin, "On homogenization approaches for manipulation with fields inside and outside metamaterials", Journal of Applied Physics, vol. 134, 2023, [DOI: 10.1063/5.0157823] [IF: 2.55, SJR: 0.70]</nothing></item><item key="35"><nothing>Pavel Terekhov, Alexey Kuznetsov, Adria &#x421;anos Valero, Hadi K. Shamkhi, Xingjie Ni, Vjaceslavs Bobrovs, Mikhail Rybin, Alexander Shalin, "Various Scattering Regimes of Truncated Cone Particles", CLEO 2023, 2023, [DOI: 10.1364/cleo_at.2023.jtu2a.129] </nothing></item><item key="36"><nothing>Alexey Dmitriev, Mikhail Rybin, "Retardation-induced exceptional point", Physical Review A, vol. 108, 2023, [DOI: 10.1103/physreva.108.013518] [IF: 2.97, SJR: 1.18]</nothing></item><item key="37"><nothing>Vladislav Chistyakov, Mikhail Sidorenko, Andrey Sayanskiy, Mikhail Rybin, "Quasicrystalline Structures with Narrow-Band Frequency&#x2013;Angular Selectivity", JETP Letters, vol. 117, pp. 742-746, 2023, [DOI: 10.1134/s0021364023601215] [IF: 1.53, SJR: 0.57]</nothing></item><item key="38"><nothing>Sergei Li, Binze Ma, Qiang Li, Mikhail Rybin, "Antenna-Based Approach to Fine Control of Supercavity Mode Quality Factor in Metasurfaces", Nano Letters, vol. 23, pp. 6399-6405, 2023, [DOI: 10.1021/acs.nanolett.3c01141] [IF: 12.26, SJR: 3.76]</nothing></item><item key="39"><nothing>&#x41D;&#x438;&#x43A;&#x438;&#x442;&#x430; &#x42E;&#x445;&#x442;&#x430;&#x43D;&#x43E;&#x432;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, "&#x412;&#x44B;&#x441;&#x43E;&#x43A;&#x43E;&#x438;&#x43D;&#x434;&#x435;&#x43A;&#x441;&#x43D;&#x44B;&#x435; &#x432;&#x43E;&#x43B;&#x43D;&#x43E;&#x432;&#x43E;&#x434;&#x44B; &#x434;&#x43B;&#x44F; &#x440;&#x430;&#x441;&#x43F;&#x440;&#x43E;&#x441;&#x442;&#x440;&#x430;&#x43D;&#x435;&#x43D;&#x438;&#x44F; &#x44D;&#x43B;&#x435;&#x43A;&#x442;&#x440;&#x43E;&#x43C;&#x430;&#x433;&#x43D;&#x438;&#x442;&#x43D;&#x44B;&#x445; &#x432;&#x43E;&#x43B;&#x43D; &#x441; &#x431;&#x43E;&#x43B;&#x44C;&#x448;&#x438;&#x43C; &#x43F;&#x43E;&#x43F;&#x435;&#x440;&#x435;&#x447;&#x43D;&#x44B;&#x43C; &#x443;&#x433;&#x43B;&#x43E;&#x432;&#x44B;&#x43C; &#x43C;&#x43E;&#x43C;&#x435;&#x43D;&#x442;&#x43E;&#x43C;", &#x41D;&#x430;&#x443;&#x447;&#x43D;&#x43E;-&#x442;&#x435;&#x445;&#x43D;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x438;&#x435; &#x432;&#x435;&#x434;&#x43E;&#x43C;&#x43E;&#x441;&#x442;&#x438; &#x421;&#x430;&#x43D;&#x43A;&#x442;-&#x41F;&#x435;&#x442;&#x435;&#x440;&#x431;&#x443;&#x440;&#x433;&#x441;&#x43A;&#x43E;&#x433;&#x43E; &#x433;&#x43E;&#x441;&#x443;&#x434;&#x430;&#x440;&#x441;&#x442;&#x432;&#x435;&#x43D;&#x43D;&#x43E;&#x433;&#x43E; &#x43F;&#x43E;&#x43B;&#x438;&#x442;&#x435;&#x445;&#x43D;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x43E;&#x433;&#x43E; &#x443;&#x43D;&#x438;&#x432;&#x435;&#x440;&#x441;&#x438;&#x442;&#x435;&#x442;&#x430;, vol. 16, pp. 140-145, 2023, [DOI: 10.18721/JPM.161.221] </nothing></item><item key="40"><nothing>&#x410;&#x43B;&#x435;&#x43A;&#x441;&#x435;&#x439; &#x414;&#x43C;&#x438;&#x442;&#x440;&#x438;&#x435;&#x432;, &#x41A;&#x441;&#x435;&#x43D;&#x438;&#x44F; &#x411;&#x430;&#x440;&#x44B;&#x448;&#x43D;&#x438;&#x43A;&#x43E;&#x432;&#x430;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, "&#x41E; &#x432;&#x43E;&#x437;&#x43C;&#x43E;&#x436;&#x43D;&#x43E;&#x441;&#x442;&#x438; &#x438;&#x437;&#x433;&#x43E;&#x442;&#x43E;&#x432;&#x43B;&#x435;&#x43D;&#x438;&#x44F; PT - &#x441;&#x438;&#x43C;&#x43C;&#x435;&#x442;&#x440;&#x438;&#x447;&#x43D;&#x44B;&#x445; &#x43E;&#x43F;&#x442;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x438;&#x445; &#x434;&#x438;&#x43C;&#x435;&#x440;&#x43E;&#x432; &#x431;&#x435;&#x437; &#x43F;&#x43E;&#x433;&#x43B;&#x43E;&#x449;&#x430;&#x44E;&#x449;&#x435;&#x433;&#x43E; &#x441;&#x432;&#x435;&#x442; &#x43C;&#x430;&#x442;&#x435;&#x440;&#x438;&#x430;&#x43B;&#x430;", &#x41F;&#x418;&#x421;&#x42C;&#x41C;&#x410; &#x412; &#x416;&#x423;&#x420;&#x41D;&#x410;&#x41B; &#x42D;&#x41A;&#x421;&#x41F;&#x415;&#x420;&#x418;&#x41C;&#x415;&#x41D;&#x422;&#x410;&#x41B;&#x42C;&#x41D;&#x41E;&#x419; &#x418; &#x422;&#x415;&#x41E;&#x420;&#x415;&#x422;&#x418;&#x427;&#x415;&#x421;&#x41A;&#x41E;&#x419; &#x424;&#x418;&#x417;&#x418;&#x41A;&#x418;, vol. 117, pp. 808-813, 2023, [DOI: 10.31857/S1234567823110022] </nothing></item><item key="41"><nothing><![CDATA[Olga Kushchenko, Dmitry Gets, Mikhail Rybin, Denis A. Yavsin, Sergey Makarov, Ivan Shishkin, Artem Sinelnik, "All Optically Switchable Active Photonics Based on the Halide Perovskite GST Platform", Laser &amp; Photonics Reviews, 2023, [DOI: 10.1002/lpor.202200836] [IF: 10.95, SJR: 3.17]]]></nothing></item><item key="42"><nothing>Alexey Dmitriev, Kseniia Baryshnikova, Mikhail Rybin, "Towards PT-symmetric Optical Dimer Fabrication without a Light-Absorbing Material", JETP Letters, vol. 117, pp. 804-809, 2023, [DOI: 10.1134/s0021364023600945] [IF: 1.53, SJR: 0.57]</nothing></item><item key="43"><nothing>&#x412;&#x43B;&#x430;&#x434;&#x438;&#x441;&#x43B;&#x430;&#x432; &#x427;&#x438;&#x441;&#x442;&#x44F;&#x43A;&#x43E;&#x432;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x421;&#x438;&#x434;&#x43E;&#x440;&#x435;&#x43D;&#x43A;&#x43E;, &#x410;&#x43D;&#x434;&#x440;&#x435;&#x439; &#x421;&#x430;&#x44F;&#x43D;&#x441;&#x43A;&#x438;&#x439;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, "&#x41A;&#x432;&#x430;&#x437;&#x438;&#x43A;&#x440;&#x438;&#x441;&#x442;&#x430;&#x43B;&#x43B;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x438;&#x435; &#x441;&#x442;&#x440;&#x443;&#x43A;&#x442;&#x443;&#x440;&#x44B; &#x441; &#x443;&#x437;&#x43A;&#x43E;&#x43F;&#x43E;&#x43B;&#x43E;&#x441;&#x43D;&#x43E;&#x439; &#x441;&#x43F;&#x435;&#x43A;&#x442;&#x440;&#x430;&#x43B;&#x44C;&#x43D;&#x43E;-&#x443;&#x433;&#x43B;&#x43E;&#x432;&#x43E;&#x439; &#x441;&#x435;&#x43B;&#x435;&#x43A;&#x442;&#x438;&#x432;&#x43D;&#x43E;&#x441;&#x442;&#x44C;&#x44E; ", &#x41F;&#x438;&#x441;&#x44C;&#x43C;&#x430; &#x432; &#x416;&#x42D;&#x422;&#x424;, vol. 117, pp. 740, 2023, [DOI: 10.31857/S1234567823100051] [IF: 1.40, SJR: 0.39]</nothing></item><item key="44"><nothing>Aleksandra Kutuzova, Mikhail Rybin, "Quality factor scaling of resonances related to bound states in the continuum", Physical Review B, vol. 107, 2023, [DOI: 10.1103/physrevb.107.195108] [IF: 3.91, SJR: 1.54]</nothing></item><item key="45"><nothing>Nikita Iukhtanov, Mikhail Rybin, "Resonant silicon waveguide with strong transverse electric field rotation for magnetic field induced non-reciprocity", Optics Letters, vol. 48, pp. 3043-3046, 2023, [DOI: 10.1364/ol.491390] [IF: 3.78, SJR: 1.18]</nothing></item><item key="46"><nothing>Aleksandra Kutuzova, Mikhail Rybin, "Switchable supercavity modes in metasurfaces based on phase change materials", St. Petersburg Polytechnic University Journal - Physics and Mathematics, vol. 16, pp. 193, 2023, [DOI: 10.18721/JPM.161.332] </nothing></item><item key="47"><nothing>&#x412;&#x43B;&#x430;&#x434;&#x438;&#x441;&#x43B;&#x430;&#x432; &#x427;&#x438;&#x441;&#x442;&#x44F;&#x43A;&#x43E;&#x432;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x421;&#x438;&#x434;&#x43E;&#x440;&#x435;&#x43D;&#x43A;&#x43E;, &#x410;&#x43D;&#x434;&#x440;&#x435;&#x439; &#x421;&#x430;&#x44F;&#x43D;&#x441;&#x43A;&#x438;&#x439;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, "Density of photonic states in aperiodic structures", Physical Review B, vol. 107, 2023, [DOI: 10.1103/physrevb.107.014205] [IF: 3.91, SJR: 1.54]</nothing></item><item key="48"><nothing><![CDATA[Aleksandr Solomonov, Olga Kushchenko, Ivan Shishkin, Denis A. Yavsin, Artem Sinelnik, Mikhail Rybin, "2.5D switchable metasurfaces", Optics &amp; Laser Technology, vol. 161, pp. 109122, 2023, [DOI: 10.1016/j.optlastec.2023.109122] [IF: 3.87, SJR: 0.87]]]></nothing></item><item key="49"><nothing>Alexey Kuznetsov, Adria &#x421;anos Valero, Hadi K. Shamkhi, Pavel Terekhov, Xingjie Ni, Vjaceslavs Bobrovs, Mikhail Rybin, Alexander Shalin, "Special scattering regimes for conical all-dielectric nanoparticles", Scientific Reports, vol. 12, 2022, [DOI: 10.1038/s41598-022-25542-2] [IF: 4.38, SJR: 1.24]</nothing></item><item key="50"><nothing>Ekaterina Maslova, Andrey Bogdanov, Mikhail Rybin, Zarina Sadrieva, "Influence of structural disorder on bound states in the continuum", 2022 Sixteenth International Congress on Artificial Materials for Novel Wave Phenomena (Metamaterials), 2022, [DOI: 10.1109/metamaterials54993.2022.9920836] </nothing></item><item key="51"><nothing><![CDATA[Artem Sinelnik, Mikhail Rybin, Dmitry Gets, Soslan Khubezhov, Lev Zelenkov, Sergey Makarov, Ivan Shishkin, "Ultra‐Broadband Photoluminescent Carbon Dots Synthesized by Laser‐Induced Thermal Shock", Laser &amp; Photonics Reviews, pp. 2200295, 2022, [DOI: 10.1002/lpor.202200295] [IF: 10.95, SJR: 3.17]]]></nothing></item><item key="52"><nothing>Ildar Yusupov, Dmitry Filonov, Andrey Bogdanov, Mikhail Rybin, Alexey Slobozhanyuk, "Passive temperature sensor tag based on quasi-BIC", 2022 7th International Conference on Smart and Sustainable Technologies (SpliTech), 2022, [DOI: 10.23919/splitech55088.2022.9854305] </nothing></item><item key="53"><nothing>Pavel Tonkaev, Ivan Sinev, Mikhail Rybin, Sergey Makarov, "Multifunctional and Transformative Metaphotonics with Emerging Materials", Chemical Reviews, 2022, [DOI: 10.1021/acs.chemrev.1c01029] [IF: 72.09, SJR: 18.72]</nothing></item><item key="54"><nothing>Evgeniy Koreshin, Mikhail Rybin, "Interlaced wire medium with quasicrystal lattice", Physical Review B, vol. 105, 2022, [DOI: 10.1103/physrevb.105.024307] [IF: 3.91, SJR: 1.54]</nothing></item><item key="55"><nothing>Yuliya Kenzhebayeva, Semyon Bachinin, Aleksandr Solomonov, Venera Gilemkhanova, Sergei Shipilovskikh, Nikita Kulachenkov, Sergey P. Fisenko, Mikhail Rybin, "Light-Induced Color Switching of Single Metal&#x2013;Organic Framework Nanocrystals", The Journal of Physical Chemistry Letters, vol. 13, pp. 777-783, 2022, [DOI: 10.1021/acs.jpclett.1c03630] [IF: 6.71, SJR: 2.98]</nothing></item><item key="56"><nothing><![CDATA[Mikhail Rybin, Artem Sinelnik, Mohammad Tajik, Evgenii V Ubyivovk, Sergey A. Yakovlev, Alexander B Pevtsov, Denis A Yavsin, Dmitry Zuev, Sergey Makarov, "Optically Reconfigurable Spherical Ge‐Sb‐Te Nanoparticles with Reversible Switching", Laser &amp; Photonics Reviews, pp. 2100253, 2021, [DOI: 10.1002/lpor.202100253] [IF: 10.95, SJR: 3.17]]]></nothing></item><item key="57"><nothing>Ekaterina Maslova, Andrey Bogdanov, Mikhail Rybin, Zarina Sadrieva, "Stability of bound states in the continuum in low-contrast photonic structures", Journal of Physics: Conference Series, vol. 2015, pp. 012090, 2021, [DOI: 10.1088/1742-6596/2015/1/012090] [SJR: 0.21]</nothing></item><item key="58"><nothing>Aleksandr Solomonov, Olga Kushchenko, D A Yavsin, Mikhail Rybin, Artem Sinelnik, "Active narrowband filter based on 2.5D metasurface from Ge2Sb2Te5", Journal of Physics: Conference Series, vol. 2015, pp. 012147, 2021, [DOI: 10.1088/1742-6596/2015/1/012147] [SJR: 0.21]</nothing></item><item key="59"><nothing>Ruslan Yafyasov, Mikhail Sidorenko, Mikhail Rybin, Alexander Petrov, Andrey Sayanskiy, "Omnidirectional Photonic Bandgap in Two-dimensional Photonic Quasicrystal Made of Near-Transparent Dielectric Material", Journal of Physics: Conference Series, vol. 2015, pp. 012164, 2021, [DOI: 10.1088/1742-6596/2015/1/012164] [SJR: 0.21]</nothing></item><item key="60"><nothing>Olga Kushchenko, Artem Sinelnik, Ivan Shishkin, Dmitry Gets, Sergey Makarov, Mikhail Rybin, "Switchable Purcell enhancement of photoluminescence by GST film", Journal of Physics: Conference Series, vol. 2015, pp. 012077, 2021, [DOI: 10.1088/1742-6596/2015/1/012077] [SJR: 0.21]</nothing></item><item key="61"><nothing>Ekaterina Maslova, Mikhail Rybin, Andrey Bogdanov, Zarina Sadrieva, "Bound states in the continuum in periodic structures with structural disorder", Nanophotonics, vol. 10, pp. 4313-4321, 2021, [DOI: 10.1515/nanoph-2021-0475] [IF: 7.92, SJR: 2.12]</nothing></item><item key="62"><nothing>Ildar Yusupov, Dmitry Filonov, Andrey Bogdanov, Mikhail Rybin, Alexey Slobozhanyuk, "Chipless wireless temperature sensor based on quasi-BIC resonance", Applied Physics Letters, vol. 119, pp. 193504, 2021, [DOI: 10.1063/5.0064480] [IF: 3.97, SJR: 1.03]</nothing></item><item key="63"><nothing>K. V. Semushev, Mikhail Rybin, Ekaterina Maslova, "Quasicrystal With Octagonal Symmetry", 2021 Fifteenth International Congress on Artificial Materials for Novel Wave Phenomena (Metamaterials), 2021, [DOI: 10.1109/metamaterials52332.2021.9577070] </nothing></item><item key="64"><nothing>Lukas Maiwald, Timo Sommer, Mikhail Sidorenko, Ruslan Yafyasov, Meraj E. Mustafa, Marvin Schulz, Mikhail Rybin, Manfred Eich, Alexander Yu. Petrov, "Control over Light Emission in Low&#x2010;Refractive&#x2010;Index Artificial Materials Inspired by Reciprocal Design", Advanced Optical Materials, pp. 2100785, 2021, [DOI: 10.1002/adom.202100785] [IF: 10.05, SJR: 2.41]</nothing></item><item key="65"><nothing>Aditya Tripathi, Ha-Reem Kim, Pavel Tonkaev, Soon-Jae Lee, Sergey Makarov, Sergey S. Kruk, Mikhail Rybin, "Lasing Action from Anapole Metasurfaces", Nano Letters, 2021, [DOI: 10.1021/acs.nanolett.1c01857] [IF: 12.26, SJR: 3.76]</nothing></item><item key="66"><nothing>Alexey Dmitriev, Mikhail Rybin, "Optical downfolding method for calculating quasinormal modes of complex nanoparticles", Physical Review A, vol. 103, 2021, [DOI: 10.1103/physreva.103.053514] [IF: 2.97, SJR: 1.18]</nothing></item><item key="67"><nothing>Anna A. Nikitina, Alexander S. Novikov, Artem Larin, Proloy Nandi, Utkur Mirsaidov, Daria V. Andreeva, Mikhail Rybin, Ekaterina V. Skorb, "All&#x2010;Dielectric Nanostructures with a Thermoresponsible Dynamic Polymer Shell", Angewandte Chemie International Edition, vol. 60, pp. 12737-12741, 2021, [DOI: 10.1002/anie.202101188] [IF: 15.34, SJR: 5.83]</nothing></item><item key="68"><nothing><![CDATA[Daria Bochek, Kirill Samusev, D.A. Yavsin, Mikhail Limonov, Mikhail Rybin, Ivan Shishkin, Artem Sinelnik, "Fabrication of Ge2Sb2Te5 metasurfaces by direct laser writing technique", Optics &amp; Laser Technology, vol. 141, pp. 107124, 2021, [DOI: 10.1016/j.optlastec.2021.107124] [IF: 3.87, SJR: 0.80]]]></nothing></item><item key="69"><nothing>Alexey Dmitriev, Mikhail Rybin, "Optical coupling of overlapping nanopillars", Optics Letters, vol. 46, pp. 1221, 2021, [DOI: 10.1364/ol.415334] [IF: 3.56, SJR: 1.26]</nothing></item><item key="70"><nothing>Song Han, Prakash Pitchappa, Wenhao Wang, Yogesh Kumar Srivastava, Mikhail Rybin, Ranjan Singh, "Extended Bound States in the Continuum with Symmetry&#x2010;Broken Terahertz Dielectric Metasurfaces", Advanced Optical Materials, pp. 2002001, 2021, [DOI: 10.1002/adom.202002001] [IF: 10.05, SJR: 2.41]</nothing></item><item key="71"><nothing>Alexey Dmitriev, Mikhail Rybin, "Exceptional point and parity-time symmetry on dipole mie resonances in dimer", AIP Conference Proceedings, 2020, [DOI: 10.1063/5.0033399] [SJR: 0.19]</nothing></item><item key="72"><nothing>Artem Sinelnik, Ivan Shishkin, Xiaochang Yu, Kirill Samusev, Pavel Belov, Mikhail Limonov, Mikhail Rybin, "Optical properties of icosahedral quasicrystals", AIP Conference Proceedings, vol. 2300, pp. 020118, 2020, [DOI: 10.1063/5.0032101] [SJR: 0.19]</nothing></item><item key="73"><nothing>Aleksandra Kutuzova, Mikhail Rybin, "Supercavity modes in silicon-based metasurfaces", AIP Conference Proceedings, vol. 2300, pp. 020074, 2020, [DOI: 10.1063/5.0031900] [SJR: 0.19]</nothing></item><item key="74"><nothing>Nikolay Solodovchenko, Kirill Samusev, Mikhail Rybin, Mikhail Limonov, "Quadrupole-driven metamaterials", AIP Conference Proceedings, vol. 2300, pp. 020120, 2020, [DOI: 10.1063/5.0032080] [SJR: 0.19]</nothing></item><item key="75"><nothing>Ekaterina Maslova, Mikhail Rybin, "Quasicrystal structure in metamaterial regime", AIP Conference Proceedings, vol. 2300, pp. 020085, 2020, [DOI: 10.1063/5.0031952] [SJR: 0.19]</nothing></item><item key="76"><nothing>Artem Sinelnik, Ivan Shishkin, Xiaochang Yu, Kirill Samusev, Pavel Belov, Mikhail Limonov, Mikhail Rybin, "Experimental Observation of Intrinsic Light Localization in Photonic Icosahedral Quasicrystals", Advanced Optical Materials, vol. 8, pp. 2001170, 2020, [DOI: 10.1002/adom.202001170] [IF: 9.93, SJR: 2.89]</nothing></item><item key="77"><nothing>Ekaterina Maslova, Mikhail Rybin, "Dielectric metamaterials with hexagonal lattice", Journal of Physics: Conference Series, vol. 1461, pp. 012095, 2020, [DOI: 10.1088/1742-6596/1461/1/012095] [SJR: 0.21]</nothing></item><item key="78"><nothing>Mikhail Rybin, "Guided&#x2010;Mode Resonances in All&#x2010;Dielectric Terahertz Metasurfaces", Advanced Optical Materials, vol. 8, pp. 1900959, 2020, [DOI: 10.1002/adom.201900959] [IF: 9.93, SJR: 2.89]</nothing></item><item key="79"><nothing>Ekaterina Maslova, Mikhail Rybin, "Dielectric metamaterials with quasicrystal structure", Journal of Physics: Conference Series, vol. 1400, pp. 066017, 2019, [DOI: 10.1088/1742-6596/1400/6/066017] [SJR: 0.22]</nothing></item><item key="80"><nothing>Mikhail Rybin, "Disorder-Immune Photonics Based on Mie-Resonant Dielectric Metamaterials", Physical Review Letters, vol. 123, pp. 163901, 2019, [DOI: 10.1103/physrevlett.123.163901] [IF: 8.39, SJR: 3.59]</nothing></item><item key="81"><nothing>Artem Sinelnik, Kirill Samusev, Mikhail Rybin, Mikhail Limonov, "Optical properties of 2D photonic structures fabricated by direct laser writing", SN Applied Sciences, vol. 1, pp. 1213, 2019, [DOI: 10.1007/s42452-019-1220-y] </nothing></item><item key="82"><nothing>Mikhail Rybin, "All&#x2010;Dielectric Active Terahertz Photonics Driven by Bound States in the Continuum", Advanced Materials, vol. 31, pp. 1901921, 2019, [DOI: 10.1002/adma.201901921] [IF: 27.40, SJR: 10.57]</nothing></item><item key="83"><nothing>Alexey Dmitriev, Mikhail Rybin, "Combining isolated scatterers into a dimer by strong optical coupling", Physical Review A, vol. 99, pp. 063837, 2019, [DOI: 10.1103/PhysRevA.99.063837] [IF: 2.78, SJR: 1.42]</nothing></item><item key="84"><nothing>Artem Sinelnik, Kirill Samusev, Mikhail Rybin, Mikhail Limonov, "Unconventional light scattering from glassy photonic films and metasurfaces", Physical Review B, vol. 99, pp. 174204, 2019, [DOI: 10.1103/physrevb.99.174204] [IF: 3.58, SJR: 1.81]</nothing></item><item key="85"><nothing>Ekaterina Maslova, Mikhail Limonov, Mikhail Rybin, "Transition between a Photonic Crystal and a Metamaterial with Electric Response in Dielectric Structures", JETP Letters, vol. 109, pp. 340-344, 2019, [DOI: 10.1134/s0021364019050114] [IF: 1.40, SJR: 0.58]</nothing></item><item key="86"><nothing>Andrey Bogdanov, Polina Kapitanova, Mikhail Rybin, Sergey Gladishev, Zarina Sadrieva, Kirill Samusev, Mikhail Limonov, "Bound states in the continuum and Fano resonances in the strong mode coupling regime", Advanced Photonics, vol. 1, pp. 16001, 2019, [DOI: 10.1117/1.AP.1.1.016001] </nothing></item><item key="87"><nothing>Ekaterina Maslova, Mikhail Limonov, Mikhail Rybin, "Dielectric metamaterials with electric response", Optics Letters, vol. 43, pp. 5516-5519, 2018, [DOI: 10.1364/OL.43.005516] [IF: 3.87, SJR: 1.71]</nothing></item><item key="88"><nothing>Andrey Bogdanov, Sergey Gladishev, Zarina Sadrieva, Mikhail Rybin, Kirill Samusev, Mikhail Limonov, "Strong Mode Coupling and High-Q Supercavity Modes in Subwavelength Dielectric Resonators", IEEE - 2018 Conference on Lasers and Electro-Optics (CLEO), 2018, [DOI: 10.1364/CLEO_AT.2018.JTh2A.73] </nothing></item><item key="89"><nothing>&#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x41B;&#x438;&#x43C;&#x43E;&#x43D;&#x43E;&#x432;, "&#x42D;&#x432;&#x43E;&#x43B;&#x44E;&#x446;&#x438;&#x44F; &#x43A;&#x430;&#x440;&#x442;&#x438;&#x43D; &#x43E;&#x43F;&#x442;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x43E;&#x439; &#x434;&#x438;&#x444;&#x440;&#x430;&#x43A;&#x446;&#x438;&#x438; &#x43D;&#x430; &#x43D;&#x435;&#x443;&#x43F;&#x43E;&#x440;&#x44F;&#x434;&#x43E;&#x447;&#x435;&#x43D;&#x43D;&#x44B;&#x445; &#x444;&#x43E;&#x442;&#x43E;&#x43D;&#x43D;&#x44B;&#x445; &#x441;&#x442;&#x440;&#x443;&#x43A;&#x442;&#x443;&#x440;&#x430;&#x445; &#x442;&#x438;&#x43F;&#x430; &#x43F;&#x43E;&#x43B;&#x435;&#x43D;&#x43D;&#x438;&#x446;&#x430;", &#x424;&#x438;&#x437;&#x438;&#x43A;&#x430; &#x442;&#x432;&#x435;&#x440;&#x434;&#x43E;&#x433;&#x43E; &#x442;&#x435;&#x43B;&#x430;, vol. 60(7), pp. 1371-1377, 2018, [IF: 0.78, SJR: 0.58]</nothing></item><item key="90"><nothing>Artem Sinelnik, Mikhail Rybin, Mikhail Limonov, Kirill Samusev, "Quasi-crystalline and Disordered Photonic Structures Fabricated Using Direct Laser Writing", AIP Conference Proceedings, vol. 1874, 2018, [DOI: 10.1063/1.4998059] [SJR: 0.17]</nothing></item><item key="91"><nothing>Artem Sinelnik, Mikhail Rybin, Mikhail Limonov, Kirill Samusev, "Optical Diffraction from Photonic-graphene Metasurfaces", 2017 Progress In Electromagnetics Research Symposium - Spring (PIERS), pp. 540-543, 2018, </nothing></item><item key="92"><nothing>Alexey Dmitriev, Mikhail Rybin, "Coupling regimes of high-index dimer", 2018 Days on Diffraction (DD), vol. 8553419, pp. 71-75, 2018, [DOI: 10.1109/DD.2018.8553419] </nothing></item><item key="93"><nothing>Sergey Li, Mikhail Rybin, "Toward Silicon-Based Metamaterials", ACS Photonics, vol. 5, pp. 4751-4757, 2018, [DOI: 10.1021/acsphotonics.8b01126] [IF: 7.14, SJR: 2.98]</nothing></item><item key="94"><nothing>Mikhail Rybin, "Active high-Q dielectric terahertz supercavities", IEEE - 2018 Conference on Lasers and Electro-Optics (CLEO), 2018, </nothing></item><item key="95"><nothing>Mohammad Tajik, Dmitry Zuev, Mikhail Rybin, Sergey Makarov, "Fabrication of spherical GeSbTe nanoparticles by laser printing technique", Journal of Physics: Conference Series, vol. 917, pp. 62017, 2017, [DOI: 10.1088/1742-6596/917/6/062017] [SJR: 0.24]</nothing></item><item key="96"><nothing>Mikhail Limonov, Mikhail Rybin, Alexander Poddubny, "Fano resonances in photonics", Nature Photonics, vol. 11, pp. 543&#x2013;554, 2017, [DOI: doi:10.1038/nphoton.2017.142] [IF: 32.52, SJR: 16.46]</nothing></item><item key="97"><nothing>Mohammad Tajik, Dmitry Zuev, Mikhail Rybin, Sergey Makarov, "Optical properties of GST nanoparticles fabricated by laser printing technique", AIP Conference Proceedings, vol. 1874, pp. 40027, 2017, [DOI: 10.1063/1.4998100] [SJR: 0.17]</nothing></item><item key="98"><nothing>Andrey Bogdanov, Zarina Sadrieva, Kirill Samusev, Mikhail Rybin, Mikhail Limonov, "High-Q resonances with low azimuthal indices in all-dielectric high-index nanoparticles", Proceedings of SPIE, vol. 10343, pp. 10343, 2017, [DOI: 10.1117/12.2272375] [SJR: 0.24]</nothing></item><item key="99"><nothing>Mikhail Rybin, Zarina Sadrieva, Kirill Samusev, Andrey Bogdanov, Mikhail Limonov, "High-Q supercavity modes in subwavelength dielectric resonators", Physical Review Letters, vol. 119, pp. 243901, 2017, [DOI: 10.1103/PhysRevLett.119.243901] [IF: 8.84, SJR: 3.62]</nothing></item><item key="100"><nothing><![CDATA[Sergey Makarov, Anastasia Zalogina, Mohammad Tajik, Dmitry Zuev, Mikhail Rybin, "Light-induced tuning and reconfiguration of nanophotonic structures", Laser &amp; Photonics Reviews, vol. 11, pp. UNSP 1700108, 2017, [DOI: 10.1002/lpor.201700108] [IF: 8.53, SJR: 4.23]]]></nothing></item><item key="101"><nothing>Mikhail Rybin, "Anisotropy enables unusual waves", Nature Photonics, vol. 11, pp. 212-214, 2017, [DOI: 10.1038/nphoton.2017.42] [IF: 32.52, SJR: 16.46]</nothing></item><item key="102"><nothing>Mikhail Rybin, Kirill Samusev, Polina Kapitanova, Dmitry Filonov, Pavel Belov, Mikhail Limonov, "Switchable invisibility of dielectric resonators", Physical Review B, vol. 95, pp. 165119, 2017, [DOI: 10.1103/PhysRevB.95.165119] [IF: 3.81, SJR: 2.34]</nothing></item><item key="103"><nothing>Mikhail Rybin, "Effect of photonic crystal stop-band on photoluminescence of a-Si1-xCx:H", Physical Review B, vol. 95, pp. 165118, 2017, [DOI: 10.1103/PhysRevB.95.165118] [IF: 3.81, SJR: 2.34]</nothing></item><item key="104"><nothing>&#x410;&#x440;&#x442;&#x435;&#x43C; &#x421;&#x438;&#x43D;&#x435;&#x43B;&#x44C;&#x43D;&#x438;&#x43A;, &#x41A;&#x438;&#x440;&#x438;&#x43B;&#x43B; &#x421;&#x430;&#x43C;&#x443;&#x441;&#x435;&#x432;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x41B;&#x438;&#x43C;&#x43E;&#x43D;&#x43E;&#x432;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, "&#x420;&#x430;&#x441;&#x441;&#x435;&#x44F;&#x43D;&#x438;&#x435; &#x441;&#x432;&#x435;&#x442;&#x430; &#x43D;&#x430; &#x434;&#x438;&#x44D;&#x43B;&#x435;&#x43A;&#x442;&#x440;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x438;&#x445; &#x43C;&#x435;&#x442;&#x430;&#x43F;&#x43E;&#x432;&#x435;&#x440;&#x445;&#x43D;&#x43E;&#x441;&#x442;&#x44F;&#x445;", JETP Letters, vol. 105, pp. 335-339, 2017, [DOI: 10.7868/S0370274X17060029] [IF: 1.36, SJR: 0.50]</nothing></item><item key="105"><nothing>Mikhail Rybin, "Supercavity lasing", Nature, vol. 541, pp. 164-165, 2017, [DOI: 10.1038/541164a] [IF: 41.58, SJR: 17.88]</nothing></item><item key="106"><nothing>Artem Sinelnik, Mikhail Rybin, Mikhail Limonov, Kirill Samusev, "Optical properties of honeycomb photonic structures", Physical Review A, vol. 95, pp. 63837, 2017, [DOI: DOI: 10.1103/PhysRevA.95.063837] [IF: 2.91, ]</nothing></item><item key="107"><nothing>Georgiy Zograf, Mikhail Rybin, Dmitry Zuev, Sergey Makarov, Pavel Belov, "Modeling of formation mechanism and optical properties of Si/Au core-shell nanoparticles", 2016 Days on Diffraction (DD), pp. 460-464, 2016, [DOI: 10.1109/DD.2016.7756894] </nothing></item><item key="108"><nothing>Mikhail Rybin, Kirill Samusev, Lukashenko S. Yu., Mikhail Limonov, "Transition from two-dimensional photonic crystals to dielectric metasurfaces in the optical diffraction with a fine structure", Scientific Reports, vol. 6, pp. 30773, 2016, [DOI: 10.1038/srep30773] [IF: 4.26, SJR: 1.69]</nothing></item><item key="109"><nothing>Kirill Samusev, Mikhail Rybin, Pavel Belov, Mikhail Limonov, "Optical diffraction by two-dimensional photonic structures with hexagonal symmetry", Physics of the Solid State, vol. 58, pp. 1412-1419, 2016, [DOI: 10.1134/S1063783416070301] [IF: 0.86, SJR: 0.43]</nothing></item><item key="110"><nothing>Kirill Samusev, Mikhail Rybin, Mikhail Limonov, "Optical laue diffraction on photonic structures designed by laser lithography", Optics and Spectroscopy, vol. 120, pp. 971-977, 2016, [DOI: 10.1134/S0030400X16060187] [IF: 0.72, SJR: 0.33]</nothing></item><item key="111"><nothing>Mikhail Rybin, Mikhail Limonov, "Inverse dispersion method for calculation of complex photonic band diagram and PT symmetry", Physical Review B, vol. 93, pp. 165132, 2016, [DOI: 10.1103/PhysRevB.93.165132] [IF: 3.84, ]</nothing></item><item key="112"><nothing>Mikhail Rybin, Dmitry Filonov, Kirill Samusev, Pavel Belov, Mikhail Limonov, "Fano resonance can make a homogeneous cylinder invisible: theoretical proposal and experimental demonstration", Proceedings of SPIE, vol. 9885, pp. 988515, 2016, [DOI: 10.1117/12.2224441] [SJR: 0.24]</nothing></item><item key="113"><nothing>Mikhail Rybin, Dmitry Filonov, Kirill Samusev, Pavel Belov, Mikhail Limonov, "Transition from photonic crystals to dielectric metamaterials: A phase diagram and the order parameter", Proceedings of SPIE, vol. 9885, pp. 98850R, 2016, [DOI: 10.1117/12.2223721] [SJR: 0.24]</nothing></item><item key="114"><nothing>Mikhail Rybin, Mikhail Limonov, "Purcell effect and Lamb shift as interference phenomena", Scientific Reports, vol. 6, pp. 20599, 2016, [DOI: 10.1038/srep20599] [IF: 4.26, SJR: 1.69]</nothing></item><item key="115"><nothing>Mikhail Rybin, Dmitry Filonov, Kirill Samusev, Pavel Belov, Mikhail Limonov, "Phase diagram for the transition from photonic crystals to dielectric metamaterials", Nature Communications, vol. 6, pp. 10102, 2015, [DOI: 10.1038/ncomms10102] [IF: 11.33, SJR: 6.29]</nothing></item><item key="116"><nothing>&#x41A;&#x438;&#x440;&#x438;&#x43B;&#x43B; &#x421;&#x430;&#x43C;&#x443;&#x441;&#x435;&#x432;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, &#x410;&#x43D;&#x442;&#x43E;&#x43D; &#x421;&#x430;&#x43C;&#x443;&#x441;&#x435;&#x432;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x41B;&#x438;&#x43C;&#x43E;&#x43D;&#x43E;&#x432;, "&#x41E;&#x43F;&#x442;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x438;&#x435; &#x441;&#x432;&#x43E;&#x439;&#x441;&#x442;&#x432;&#x430; &#x444;&#x43E;&#x442;&#x43E;&#x43D;&#x43D;&#x44B;&#x445; &#x43A;&#x440;&#x438;&#x441;&#x442;&#x430;&#x43B;&#x43B;&#x43E;&#x432; &#x441;&#x43E; &#x441;&#x442;&#x440;&#x443;&#x43A;&#x442;&#x443;&#x440;&#x43E;&#x439; &#xAB;&#x43F;&#x43E;&#x43B;&#x435;&#x43D;&#x43D;&#x438;&#x446;&#x44B;&#xBB;, &#x438;&#x437;&#x433;&#x43E;&#x442;&#x43E;&#x432;&#x43B;&#x435;&#x43D;&#x43D;&#x44B;&#x445; &#x43C;&#x435;&#x442;&#x43E;&#x434;&#x43E;&#x43C; &#x442;&#x440;&#x435;&#x445;&#x43C;&#x435;&#x440;&#x43D;&#x43E;&#x439; &#x43B;&#x430;&#x437;&#x435;&#x440;&#x43D;&#x43E;&#x439; &#x43B;&#x438;&#x442;&#x43E;&#x433;&#x440;&#x430;&#x444;&#x438;&#x438;", &#x424;&#x438;&#x437;&#x438;&#x43A;&#x430; &#x442;&#x432;&#x435;&#x440;&#x434;&#x43E;&#x433;&#x43E; &#x442;&#x435;&#x43B;&#x430;, vol. 57, pp. 2420-2428, 2015, [IF: 0.78, SJR: 0.58]</nothing></item><item key="117"><nothing>Mikhail Rybin, Kirill Samusev, Mikhail Limonov, "Multiscale modeling of all-dielectric metamaterials", 2015 Days on Diffraction (DD), 2015, [DOI: 10.1109/DD.2015.7354875] </nothing></item><item key="118"><nothing>Kirill Samusev, Mikhail Rybin, Anton Samusev, Mikhail Limonov, "Invisibility of a finite dielectric cylinder under Fano resonance conditions", Physics of the Solid State, vol. 57, pp. 1991-1996, 2015, [DOI: 10.1134/S1063783415100273] [IF: 0.83, SJR: 0.42]</nothing></item><item key="119"><nothing>Mikhail Rybin, Dmitry Filonov, Pavel Belov, Mikhail Limonov, "Switching from Visibility to Invisibility via Fano Resonances: Theory and Experiment", Scientific Reports, vol. 5, pp. 8774, 2015, [DOI: 10.1038/srep08774] [IF: 5.23, SJR: 2.03]</nothing></item><item key="120"><nothing>Mikhail Rybin, Ivan Shishkin, Kirill Samusev, Pavel Belov, Mikhail Limonov, "Band Structure of Photonic Crystals Fabricated by Two-Photon Polymerization", Crystals, vol. 5, pp. 61-73, 2015, [DOI: 10.3390/cryst5010061] [IF: 2.08, SJR: 0.57]</nothing></item><item key="121"><nothing>Ivan Shishkin, Kirill Samusev, Mikhail Rybin, Mikhail Limonov, Pavel Belov, "Two modes of laser lithography fabrication of three-dimensional submicrometer structures", Physics of the Solid State, vol. 56, pp. 2166-2172, 2014, [DOI: 10.1134/s1063783414110262] [IF: 0.82, SJR: 0.47]</nothing></item><item key="122"><nothing>Ivan Shishkin, Mikhail Rybin, Kirill Samusev, Mikhail Limonov, Pavel Belov, "Fabrication of submicron structures by three-dimensional laser lithography", JETP Letters, vol. 99, pp. 531-534, 2014, [DOI: 10.1134/s0021364014090112] [IF: 1.36, SJR: 0.76]</nothing></item><item key="123"><nothing>&#x418;&#x432;&#x430;&#x43D; &#x428;&#x438;&#x448;&#x43A;&#x438;&#x43D;, &#x41A;&#x438;&#x440;&#x438;&#x43B;&#x43B; &#x421;&#x430;&#x43C;&#x443;&#x441;&#x435;&#x432;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x41B;&#x438;&#x43C;&#x43E;&#x43D;&#x43E;&#x432;, &#x41F;&#x430;&#x432;&#x435;&#x43B; &#x411;&#x435;&#x43B;&#x43E;&#x432;, "&#x414;&#x432;&#x430; &#x440;&#x435;&#x436;&#x438;&#x43C;&#x430; &#x441;&#x43E;&#x437;&#x434;&#x430;&#x43D;&#x438;&#x44F; &#x442;&#x440;&#x435;&#x445;&#x43C;&#x435;&#x440;&#x43D;&#x44B;&#x445; &#x441;&#x443;&#x431;&#x43C;&#x438;&#x43A;&#x440;&#x43E;&#x43D;&#x43D;&#x44B;&#x445; &#x441;&#x442;&#x440;&#x443;&#x43A;&#x442;&#x443;&#x440; &#x43C;&#x435;&#x442;&#x43E;&#x434;&#x43E;&#x43C; &#x43B;&#x430;&#x437;&#x435;&#x440;&#x43D;&#x43E;&#x439; &#x43B;&#x438;&#x442;&#x43E;&#x433;&#x440;&#x430;&#x444;&#x438;&#x438;", &#x424;&#x438;&#x437;&#x438;&#x43A;&#x430; &#x442;&#x432;&#x435;&#x440;&#x434;&#x43E;&#x433;&#x43E; &#x442;&#x435;&#x43B;&#x430;, vol. 56, pp. 2097-2103, 2014, [IF: 0.78, SJR: 0.58]</nothing></item><item key="124"><nothing>Mikhail Rybin, Ivan Sinev, Kirill Samusev, Mikhail Limonov, "Fano resonances in high-index dielectric photonic structures", Proceedings of SPIE, vol. 9127, pp. 912712, 2014, [DOI: 10.1117/12.2051945] [SJR: 0.24]</nothing></item><item key="125"><nothing>Mikhail Rybin, Ivan Sinev, Kirill Samusev, Mikhail Limonov, "Photonic properties of two-dimensional high-contrast periodic structures: Numerical calculations", Physics of the Solid State, vol. 56, pp. 588-593, 2014, [DOI: 10.1134/S1063783414030275] [IF: 0.82, SJR: 0.47]</nothing></item><item key="126"><nothing>Mikhail Rybin, Ivan Sinev, Kirill Samusev, Mikhail Limonov, "Cascades of Fano resonances in Mie scattering", Physics of the Solid State, vol. 56, pp. 580-587, 2014, [DOI: 10.1134/S1063783414030263] [IF: 0.82, SJR: 0.47]</nothing></item><item key="127"><nothing>Ivan Shishkin, Mikhail Rybin, Kirill Samusev, Mikhail Limonov, "Multiple Bragg diffraction in opal-based photonic crystals: Spectral and spatial dispersion", Physical Review B, vol. 89, pp. 035124(1-9), 2014, [DOI: 10.1103/PhysRevB.89.035124] [IF: 3.74, ]</nothing></item><item key="128"><nothing>Mikhail Rybin, Kirill Samusev, Ivan Sinev, Mikhail Limonov, "Mie scattering as a cascade of Fano resonances", Optics Express, vol. 21, pp. 30107-30113, 2013, [DOI: 10.1364/OE.21.030107] [IF: 3.53, SJR: 2.34]</nothing></item><item key="129"><nothing>Mikhail Rybin, Polina Kapitanova, Dmitry Filonov, Alexey Slobozhanyuk, Pavel Belov, Mikhail Limonov, "Fano resonances in antennas: General control over radiation patterns", Physical Review B, vol. 88, pp. 205106 (1-8), 2013, [DOI: 10.1103/PhysRevB.88.205106] [IF: 3.66, ]</nothing></item><item key="130"><nothing>&#x41A;&#x438;&#x440;&#x438;&#x43B;&#x43B; &#x421;&#x430;&#x43C;&#x443;&#x441;&#x435;&#x432;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x41B;&#x438;&#x43C;&#x43E;&#x43D;&#x43E;&#x432;, "Statistical analysis of geometrical parameters for objects with radial symmetry (in Russian)", Scientific and Technical Journal of Information Technologies, Mechanics and Optics, vol. 6, pp. 36-40, 2013, </nothing></item><item key="131"><nothing>Mikhail Rybin, Ivan Sinev, Anton Samusev, Kirill Samusev, Mikhail Limonov, "Dimensionality effects on the optical diffraction from opal-based photonic structures", Physical Review B, vol. 87, pp. 125131(1-8), 2013, [DOI: 10.1103/PhysRevB.87.125131] [IF: 3.66, ]</nothing></item><item key="132"><nothing>Alexander Poddubny, Mikhail Rybin, Mikhail Limonov, "Fano interference governs wave transport in disordered systems", Nature Communications, vol. 3, pp. 914, 2012, [DOI: 10.1038/ncomms1924] [IF: 10.02, SJR: 5.87]</nothing></item><item key="133"><nothing>Ivan Shishkin, Kirill Samusev, Mikhail Rybin, Mikhail Limonov, "Glassy nanostructures fabricated by the direct laser writing method", Physics of the Solid State, vol. 54, pp. 1975-1980, 2012, [DOI: 10.1134/S1063783412100319] [IF: 0.77, SJR: 0.47]</nothing></item><item key="134"><nothing>Ivan Shishkin, Kirill Samusev, Mikhail Rybin, Mikhail Limonov, "Inverted yablonovite fabricated by the direct laser writing method and its photonic structure", JETP Letters, vol. 95, pp. 457-461, 2012, [DOI: 10.1134/S0021364012090123] [IF: 1.52, SJR: 1.03]</nothing></item><item key="135"><nothing>Ivan Shishkin, Kirill Samusev, Mikhail Rybin, Mikhail Limonov, "Inverted Yablonovite-like 3D photonic crystals fabricated by laser nanolithography", Proceedings of SPIE, vol. 8425, pp. 84252C, 2012, [DOI: 10.1117/12.940752] [SJR: 0.24]</nothing></item><item key="136"><nothing>Ivan Sinev, Mikhail Rybin, Anton Samusev, Kirill Samusev, Mikhail Limonov, "Optical diffraction from opal-based photonic structures: transition from 2D to 3D regimes", Proceedings of SPIE, vol. 8425, pp. 84250U, 2012, [DOI: 10.1117/12.921548] [SJR: 0.24]</nothing></item><item key="137"><nothing>Anton Samusev, Ivan Sinev, Kirill Samusev, Mikhail Rybin, Mikhail Limonov, "Small-angle xray diffraction investigation of twinned opal-like structures", Physics of the Solid State, vol. 54, pp. 2073-2082, 2012, [DOI: 10.1134/S1063783412100307] [IF: 0.77, SJR: 0.47]</nothing></item><item key="138"><nothing>Anton Samusev, Mikhail Limonov, Mikhail Rybin, "Disorder-induced Fano resonance in 1D photonic crystals", 2011 Int. Quantum El. Conf. (IQEC) and Conf. on Lasers and El.-Opt. (CLEO) Pacific Rim incorporating the Australasian Conf. on Opt., Lasers and Spectr. and the Australian Conf. on Opt. Fibre Techn., pp. 1041-1043, 2011, [DOI: 10.1109/IQEC-CLEO.2011.6194063] </nothing></item><item key="139"><nothing>Anton Samusev, Kirill Samusev, Ivan Sinev, Mikhail Rybin, Mikhail Limonov, "Selective control of light beams in diffraction experiments on synthetic opals", Physics of the Solid State, vol. 53, pp. 1415-1424, 2011, [DOI: 10.1134/S1063783411070225] [IF: 0.71, SJR: 0.36]</nothing></item><item key="140"><nothing>Mikhail Limonov, Mikhail Rybin, Kirill Samusev, "Multiple Bragg Diffraction in Low Contrast Photonic Crystals Based on Synthetic Opals", Physics of the Solid State, vol. 53, pp. 1105-1113, 2011, [DOI: 10.1134/S1063783411060242] [IF: 0.71, SJR: 0.36]</nothing></item><item key="141"><nothing>Anton Samusev, Kirill Samusev, Mikhail Rybin, Mikhail Limonov, "Two-dimensional light diffraction from thin opal films", Physics of the Solid State, vol. 53, pp. 1056-1061, 2011, [DOI: 10.1134/S106378341105026X] [IF: 0.71, SJR: 0.36]</nothing></item><item key="142"><nothing>&#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x41B;&#x438;&#x43C;&#x43E;&#x43D;&#x43E;&#x432;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, &#x41A;&#x438;&#x440;&#x438;&#x43B;&#x43B; &#x421;&#x430;&#x43C;&#x443;&#x441;&#x435;&#x432;, "&#x41C;&#x43D;&#x43E;&#x433;&#x43E;&#x432;&#x43E;&#x43B;&#x43D;&#x43E;&#x432;&#x430;&#x44F; &#x431;&#x440;&#x44D;&#x433;&#x433;&#x43E;&#x432;&#x441;&#x43A;&#x430;&#x44F; &#x434;&#x438;&#x444;&#x440;&#x430;&#x43A;&#x446;&#x438;&#x44F; &#x432; &#x43D;&#x438;&#x437;&#x43A;&#x43E;&#x43A;&#x43E;&#x43D;&#x442;&#x440;&#x430;&#x441;&#x442;&#x43D;&#x44B;&#x445; &#x444;&#x43E;&#x442;&#x43E;&#x43D;&#x43D;&#x44B;&#x445; &#x43A;&#x440;&#x438;&#x441;&#x442;&#x430;&#x43B;&#x43B;&#x430;&#x445; &#x43D;&#x430; &#x43E;&#x441;&#x43D;&#x43E;&#x432;&#x435; &#x441;&#x438;&#x43D;&#x442;&#x435;&#x442;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x438;&#x445; &#x43E;&#x43F;&#x430;&#x43B;&#x43E;&#x432;", &#x424;&#x438;&#x437;&#x438;&#x43A;&#x430; &#x442;&#x432;&#x435;&#x440;&#x434;&#x43E;&#x433;&#x43E; &#x442;&#x435;&#x43B;&#x430;, vol. 53, pp. 1045-1052, 2011, [IF: 0.78, SJR: 0.58]</nothing></item><item key="143"><nothing>&#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x420;&#x44B;&#x431;&#x438;&#x43D;, "&#x41F;&#x440;&#x43E;&#x437;&#x440;&#x430;&#x447;&#x43D;&#x44B;&#x435; &#x438; &#x43F;&#x440;&#x43E;&#x432;&#x43E;&#x434;&#x44F;&#x449;&#x438;&#x435; &#x43D;&#x430;&#x43D;&#x43E;&#x430;&#x43B;&#x43C;&#x430;&#x437;&#x43D;&#x44B;&#x435; &#x43F;&#x43B;&#x435;&#x43D;&#x43A;&#x438;, &#x43B;&#x435;&#x433;&#x438;&#x440;&#x43E;&#x432;&#x430;&#x43D;&#x43D;&#x44B;&#x435; &#x431;&#x43E;&#x440;&#x43E;&#x43C;", &#x41F;&#x438;&#x441;&#x44C;&#x43C;&#x430; &#x432; &#x416;&#x422;&#x424;, vol. 37, pp. 64-71, 2011, </nothing></item><item key="144"><nothing>Mikhail Rybin, Anton Samusev, Mikhail Limonov, "Bragg scattering induces Fano resonance in photonic crystals", Photonics and Nanostructures - Fundamentals and Applications, vol. 8, pp. 86-93, 2010, [DOI: 10.1016/j.photonics.2009.07.003] [IF: 2.13, SJR: 1.55]</nothing></item><item key="145"><nothing>Anton Samusev, Kirill Samusev, Mikhail Rybin, Mikhail Limonov, "Peculiarities of the band structure of multi-component photonic crystals with different dimensions", Journal of Physics: Condensed Matter, vol. 22, pp. 115401, 2010, [DOI: 10.1088/0953-8984/22/11/115401] [IF: 1.96, SJR: 1.53]</nothing></item></response>
