<?xml version="1.0"?>
<response><item key="0"><nothing>Irina V. Nadoyan, Nikita A. Solomonov, Kristina N. Novikova, Alexander V. Pavlov, Vladislav A. Sharov, Alexey Mozharov, Dmitry Permyakov, Vitaliy Shkoldin, Denis Kislov, Alexander Shalin, Alexander O. Golubok, Mihail Petrov, Ivan Mukhin, "Parametric Optothermal Modulation of Carbon Nanooscillator Decorated with Mie Resonant Silicon Particle", Advanced Optical Materials, 2024, [DOI: 10.1002/adom.202400228] [IF: 9.93, SJR: 2.89]</nothing></item><item key="1"><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="2"><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="3"><nothing>Esmaeel Zanganeh, Adria &#x421;anos Valero, Alexander Shalin, Polina Kapitanova, Mingzhao Song, Elizaveta Nenasheva, Andrey Miroshnichenko, Andrey Evlyukhin, "Anapole state as a new paradigm for highly efficient wireless power transfer", 2022 Wireless Power Week (WPW), 2022, [DOI: 10.1109/wpw54272.2022.9853903] </nothing></item><item key="4"><nothing>Denis Kislov, Olga Kushchenko, Alexander Shalin, "Optomechanical interaction between single-walled carbon nanotubes of various structures", Journal of Physics: Conference Series, vol. 2015, pp. 012066, 2021, [DOI: 10.1088/1742-6596/2015/1/012066] [SJR: 0.21]</nothing></item><item key="5"><nothing>Esmaeel Zanganeh, Mingzhao Song, Adria &#x421;anos Valero, Alexander Shalin, Andrey Miroshnichenko, Andrey Evlyukhin, Polina Kapitanova, "Nonradiating sources for efficient wireless power transfer", Nanophotonics, vol. 10, pp. 4399-4408, 2021, [DOI: 10.1515/nanoph-2021-0378] [IF: 7.92, SJR: 2.12]</nothing></item><item key="6"><nothing>Alexey Mozharov, Yury Berdnikov, Nikita Solomonov, Kristina Novikova, Irina Nadoyan, Vitaliy Shkoldin, Alexander Golubok, Denis Kislov, Alexander Shalin, Mihail Petrov, Ivan Mukhin, "Nanomass Sensing via Node Shift Tracing in Vibrations of Coupled Nanowires Enhanced by Fano Resonances", ACS Applied Nano Materials, vol. 4, pp. 11989-11996, 2021, [DOI: 10.1021/acsanm.1c02558] [IF: 6.14, SJR: 1.18]</nothing></item><item key="7"><nothing>Alexey Kuznetsov, Adria &#x421;anos Valero, Mikhail Tarkhov, Vjaceslavs Bobrovs, Dmitrii Redka, Alexander Shalin, "Transparent hybrid anapole metasurfaces with negligible electromagnetic coupling for phase engineering", Nanophotonics, vol. 10, pp. 4385-4398, 2021, [DOI: 10.1515/nanoph-2021-0377] [IF: 7.92, SJR: 2.12]</nothing></item><item key="8"><nothing><![CDATA[Adria Сanos Valero, Egor Gurvitz, Fedor Benimetskiy, Dmitry Pidgayko, Anton Samusev, Andrey B. Evlyukhin, Vjaceslavs Bobrovs, Dmitrii Redka, Michael I. Tribelsky, Mohsen Rahmani, Khosro Zangeneh Kamali, Alexander A. Pavlov, Andrey E. Miroshnichenko, Alexander Shalin, "Theory, Observation, and Ultrafast Response of the Hybrid Anapole Regime in Light Scattering", Laser &amp; Photonics Reviews, vol. 15, pp. 2100114, 2021, [DOI: 10.1002/lpor.202100114] [IF: 10.95, SJR: 3.17]]]></nothing></item><item key="9"><nothing>Denis Kislov, Egor Gurvitz, Vjaceslavs Bobrovs, Alexander A. Pavlov, Dmitrii N. Redka, Manuel I. Marqu&#xE9;s, Alexander Shalin, "Multipole Engineering of Attractive&#x2212;Repulsive and Bending Optical Forces", Advanced Photonics Research, pp. 2100082, 2021, [DOI: 10.1002/adpr.202100082] </nothing></item><item key="10"><nothing>Adria &#x421;anos Valero, Denis Kislov, Egor Gurvitz, Hadi. K. Shamkhi, Alexander. A. Pavlov, Dmitrii Redka, Sergey Yankin, Pavel Zem&#xE1;nek, Alexander Shalin, "Spin-locked scattering forces in the near field of high index particles", AIP Conference Proceedings, vol. 2300, pp. 020016, 2020, [DOI: 10.1063/5.0031977] [SJR: 0.19]</nothing></item><item key="11"><nothing>Denis Kislov, Denis Novitsky, Alexey Kadochkin, Alexander Shalin, "Novel concept for contactless all-optical temperature measurement based on diffusion-inspired phosphorescent decay in nanostructured environment", AIP Conference Proceedings, vol. 2300, pp. 020054, 2020, [DOI: 10.1063/5.0031716] [SJR: 0.19]</nothing></item><item key="12"><nothing>N. A. Kostina, Alexander Shalin, "Optical pulling force near one-dimensional photonic crystal", AIP Conference Proceedings, vol. 2300, pp. 020067, 2020, [DOI: 10.1063/5.0032067] [SJR: 0.19]</nothing></item><item key="13"><nothing>Sofiya Ponomareva, Egor Gurvitz, Konstantin Ladutenko, A. M. Miroshnichenko, Alexander Shalin, "Anapole electric dipole modes for a dielectric sphere", AIP Conference Proceedings, vol. 2300, pp. 020099, 2020, [DOI: 10.1063/5.0032562] [SJR: 0.19]</nothing></item><item key="14"><nothing>Hadi Shamkhi Al Naeemah, Adria &#x421;anos Valero, Alexander Shalin, "Effective electromagnetic fields of a particle situated near a substrate", AIP Conference Proceedings, vol. 2300, pp. 020115, 2020, [DOI: 10.1063/5.0031705] [SJR: 0.19]</nothing></item><item key="15"><nothing>Egor Gurvitz, Alexander Shalin, "Nonlinear control of lateral optical forces excited by high-order multipole resonances in all-dielectric nanoparticles", AIP Conference Proceedings, vol. 2300, pp. 020043, 2020, [DOI: 10.1063/5.0031961] [SJR: 0.19]</nothing></item><item key="16"><nothing>Denis Kislov, Alexander Shalin, "Optomechanical manipulation of nanoparticles with a magnetic response in a Gaussian beam", AIP Conference Proceedings, vol. 2300, pp. 020055, 2020, [DOI: 10.1063/5.0031717] [SJR: 0.19]</nothing></item><item key="17"><nothing>Alexey Kuznetsov, Adria &#x421;anos Valero, Alexander Shalin, "Optical properties of a metasurface based on silicon nanocylinders in a hybrid Anapole state", AIP Conference Proceedings, vol. 2300, pp. 020075, 2020, [DOI: 10.1063/5.0031735] [SJR: 0.19]</nothing></item><item key="18"><nothing>Alexander Shalin, Natalia Kostina, "Light-Induced particle binding assisted by metamaterial substrates", AIP Conference Proceedings, vol. 2300, pp. 020113, 2020, [DOI: 10.1063/5.0032090] [SJR: 0.19]</nothing></item><item key="19"><nothing>Pavel Terekhov, Andrei Evlyukhin, Alexander Shalin, "Exciting magnetic octupole in near-infrared range by nanostructuring", AIP Conference Proceedings, vol. 2300, pp. 020126, 2020, [DOI: 10.1063/5.0031674] [SJR: 0.19]</nothing></item><item key="20"><nothing>Adria &#x421;anos Valero, Egor Gurvitz, Andrey Miroshnichenko, Alexander Shalin, "Hybrid anapoles: Near-zero scattering States driven by high order modal interference", AIP Conference Proceedings, vol. 2300, pp. 020015, 2020, [DOI: 10.1063/5.0031974] [SJR: 0.19]</nothing></item><item key="21"><nothing>Egor Gurvitz, Alexander Shalin, "The development of the toroidal electric dipole source", AIP Conference Proceedings, vol. 2300, pp. 020044, 2020, [DOI: 10.1063/5.0031962] [SJR: 0.19]</nothing></item><item key="22"><nothing>Natalia Kostina, Denis Kislov, Alexey Proskurin, Alexander Shalin, "Long-range optical binding due to volumetric modes of hyperbolic metamaterial slab", AIP Conference Proceedings, vol. 2300, pp. 020066, 2020, [DOI: 10.1063/5.0032064] [SJR: 0.19]</nothing></item><item key="23"><nothing>Denis Novitsky, Alexander Shalin, Andrey V. Novitsky, "The exceptional points of non-Hermitian optical systems: Scattering matrix definition, coherent perfect absorption, and lasing", AIP Conference Proceedings, vol. 2300, pp. 020092, 2020, [DOI: 10.1063/5.0031767] [SJR: 0.19]</nothing></item><item key="24"><nothing>Hadi Shamkhi Al Naeemah, Alexander Shalin, "Enhanced helicity at the transverse Kerker condition", AIP Conference Proceedings, vol. 2300, pp. 020114, 2020, [DOI: 10.1063/5.0031704] [SJR: 0.19]</nothing></item><item key="25"><nothing>Daria Dolinina, Alexander Shalin, Alexey Yulin, "Dynamics of Particles Trapped by Dissipative Domain Walls", JETP Letters, vol. 112, pp. 71-76, 2020, [DOI: 10.1134/s0021364020140027] [IF: 1.53, SJR: 0.57]</nothing></item><item key="26"><nothing>Adria &#x421;anos Valero, Denis Kislov, Egor Gurvitz, Hadi Shamkhi Al Naeemah, Alexander A. Pavlov, Dmitrii Redka, Sergey Yankin, Pavel Zem&#xE1;nek, Alexander Shalin, "Nanovortex&#x2010;Driven All&#x2010;Dielectric Optical Diffusion Boosting and Sorting Concept for Lab&#x2010;on&#x2010;a&#x2010;Chip Platforms", Advanced Science, vol. 7, pp. 1903049, 2020, [DOI: 10.1002/advs.201903049] [IF: 16.81, SJR: 5.39]</nothing></item><item key="27"><nothing>Hadi Shamkhi Al Naeemah, Kseniia Baryshnikova, Andrey Sayanskiy, Polina Kapitanova, Pavel Terekhov, Pavel Belov, Andrei Evlyukhin, Yuri Kivshar, Alexander Shalin, "Simultaneous suppression of forward and backward light scattering by high-index nanoparticles based on Kerker-like effects", Journal of Physics: Conference Series, vol. 1461, pp. 012158, 2020, [DOI: 10.1088/1742-6596/1461/1/012158] [SJR: 0.23]</nothing></item><item key="28"><nothing>Adria &#x421;anos Valero, Alexander Shalin, "Optically-driven Rotation of Perfectly Absorbing Nanoparticles", Journal of Physics: Conference Series, vol. 1461, pp. 012021, 2020, [DOI: 10.1088/1742-6596/1461/1/012021] [SJR: 0.23]</nothing></item><item key="29"><nothing>Adria &#x421;anos Valero, Egor Gurvitz, Alexander Shalin, "Nontrivial invisibility induced by optical hybrid anapole", Journal of Physics: Conference Series, vol. 1461, pp. 012020, 2020, [DOI: 10.1088/1742-6596/1461/1/012020] [SJR: 0.23]</nothing></item><item key="30"><nothing><![CDATA[Pavel Terekhov, Andrei Evlyukhin, Dmitrii Redka, Valentyn S. Volkov, Alexander Shalin, "Magnetic Octupole Response of Dielectric Quadrumers", Laser &amp; Photonics Reviews, vol. 14, pp. 1900331, 2020, [DOI: 10.1002/lpor.201900331] [IF: 13.14, SJR: 3.78]]]></nothing></item><item key="31"><nothing>Daria Dolinina, Alexander Shalin, Alexey Yulin, "Complex Dynamics of Optical Solitons Interacting with Nanoparticles", JETP Letters, vol. 111, pp. 268-272, 2020, [DOI: 10.1134/s002136402005001x] [IF: 1.53, SJR: 0.57]</nothing></item><item key="32"><nothing><![CDATA[Hadi Shamkhi Al Naeemah, Kseniia Baryshnikova, Andrey Sayanskiy, Pavel Terekhov, Egor Gurvitz, Adria Сanos Valero, Polina Kapitanova, Andrei Evlyukhin, Pavel Belov, Yuri Kivshar, Alexander Shalin, "Non-Huygens Invisible Metasurfaces", 2019 PhotonIcs &amp; Electromagnetics Research Symposium - Spring (PIERS-Spring), 2020, [DOI: 10.1109/piers-spring46901.2019.9017217] ]]></nothing></item><item key="33"><nothing>Denis Kislov, Denis Novitsky, Alexey Kadochkin, Dmitrii Redka, Alexander Shalin, "Diffusion-inspired time-varying phosphorescent decay in a nanostructured environment", Physical Review B, vol. 101, 2020, [DOI: 10.1103/physrevb.101.035420] [IF: 4.04, SJR: 1.78]</nothing></item><item key="34"><nothing>Natalia Kostina, Denis Kislov, Aliaksandra N. Ivinskaya, Alexey Proskurin, Dmitrii N. Redka, Andrey Novitsky, Alexander Shalin, "Nanoscale Tunable Optical Binding Mediated by Hyperbolic Metamaterials", ACS Photonics, vol. 7, pp. 425-433, 2020, [DOI: 10.1021/acsphotonics.9b01378] [IF: 7.53, SJR: 2.74]</nothing></item><item key="35"><nothing>Daria Dolinina, Alexander Shalin, Alexey Yulin, "Dynamics of particles trapped by dissipative solitons", JETP Letters, vol. 110, pp. 755-756, 2020, [DOI: 10.1134/s0370274x19230085] [IF: 1.53, SJR: 0.57]</nothing></item><item key="36"><nothing>Denis Novitsky, Alexander Shalin, "Kink-based mirrorless quasi-bistability in resonantly absorbing media", Optics Letters, vol. 45, pp. 137, 2019, [DOI: 10.1364/ol.45.000137] [IF: 3.71, SJR: 1.79]</nothing></item><item key="37"><nothing>Alexander Shalin, Aleksandra Ivinskaia, Natalia Kostina, Mihail Petrov, Andrey Bogdanov, Sergei Sukhov, "Numerical and analytical models for calculating optical forces near auxiliary plasmonic substrates", PROCEEDINGS OF THE INTERNATIONAL CONFERENCE OF COMPUTATIONAL METHODS IN SCIENCES AND ENGINEERING 2019 (ICCMSE-2019), 2019, [DOI: 10.1063/1.5137933] </nothing></item><item key="38"><nothing>Roman E. Noskov, Egor Gurvitz, Vitaliy Shkoldin, Mikhail Zyuzin, Alexander Shalin, Ivan Shishkin, "Biological Kerker Effect Boosts Light Collection Efficiency in Plants", Nano Letters, vol. 19, pp. 7062-7071, 2019, [DOI: 10.1021/acs.nanolett.9b02540] [IF: 11.24, SJR: 5.79]</nothing></item><item key="39"><nothing>Hadi Shamkhi Al Naeemah, Andrey Sayanskiy, Adria &#x421;anos Valero, Polina Kapitanova, Yuri Kivshar, Alexander Shalin, "Transparency and perfect absorption of all-dielectric resonant metasurfaces governed by the transverse Kerker effect", Physical Review Materials, vol. 3, pp. 085201, 2019, [DOI: 10.1103/physrevmaterials.3.085201] [IF: 3.34, SJR: 1.37]</nothing></item><item key="40"><nothing>Denis Novitsky, Alexander Shalin, "Different Regimes of Ultrashort Pulse Propagation in Disordered Layered Media with Resonant Loss and Gain", Annalen der Physik, vol. 531, pp. 1900080, 2019, [DOI: 10.1002/andp.201900080] [IF: 3.32, SJR: 1.28]</nothing></item><item key="41"><nothing>Hadi Shamkhi Al Naeemah, Kseniia Baryshnikova, Andrey Sayanskiy, Polina Kapitanova, Pavel Terekhov, Pavel Belov, Andrei Evlyukhin, Yuri Kivshar, Alexander Shalin, "Transverse Scattering and Generalized Kerker Effects in All-Dielectric Mie-Resonant Metaoptics", Physical Review Letters, vol. 122, pp. 193905, 2019, [DOI: 10.1103/physrevlett.122.193905] [IF: 8.39, SJR: 3.59]</nothing></item><item key="42"><nothing>Pavel Terekhov, Andrei Evlyukhin, Alexander Shalin, "Polarization-dependent asymmetric light scattering by silicon nanopyramids and their multipoles resonances", Journal of Applied Physics, vol. 125, pp. 173108, 2019, [DOI: 10.1063/1.5094162] [IF: 2.29, SJR: 0.73]</nothing></item><item key="43"><nothing>Denis Novitsky, Alexander Shalin, Andrey Novitsky, "Nonlocal homogenization of PT-symmetric multilayered structures", Physical Review A, vol. 99, pp. 043812, 2019, [DOI: 10.1103/physreva.99.043812] [IF: 2.78, SJR: 1.42]</nothing></item><item key="44"><nothing>Pavel Terekhov, Hadi Shamkhi Al Naeemah, Egor Gurvitz, Kseniia Baryshnikova, Andrei Evlyukhin, Alexander Shalin, "Broadband forward scattering from dielectric cubic nanoantenna in lossless media", Optics Express, vol. 27, pp. 10924, 2019, [DOI: 10.1364/oe.27.010924] [IF: 3.67, SJR: 1.53]</nothing></item><item key="45"><nothing>Pavel Terekhov, Hadi Shamkhi Al Naeemah, Egor Gurvitz, Andrei Evlyukhin, Alexander Shalin, "High-refractive-index nanoparticles embedded in media: multipole evolution and broadband forward scattering enhancement (Conference Presentation)", Optical Components and Materials XVI, 2019, [DOI: 10.1117/12.2506971] [IF: 0.56, SJR: 0.24]</nothing></item><item key="46"><nothing>Pavel Terekhov, Kseniia Baryshnikova, Andrei Evlyukhin, Alexander Shalin, "Enhanced absorption in all-dielectric metasurfaces due to magnetic dipole excitation", Scientific Reports, vol. 9, pp. 3438, 2019, [DOI: 10.1038/s41598-019-40226-0] [IF: 4.00, SJR: 1.34]</nothing></item><item key="47"><nothing>Pavel Terekhov, Kseniia Baryshnikova, Alexander Shalin, Andrei Evlyukhin, "Multipole analysis of dielectric metasurfaces composed of nonspherical nanoparticles and lattice invisibility effect", Physical Review B, vol. 99, pp. 45424, 2019, [DOI: 10.1103/PhysRevB.99.045424] [IF: 3.58, SJR: 1.81]</nothing></item><item key="48"><nothing>Natalia Kostina, Mihail Petrov, Aleksandra Ivinskaia, Andrey Bogdanov, Ivan Toftul, Alexander Shalin, "Optical binding via surface plasmon polariton interference", Physical Review B, vol. 99, pp. 125416, 2019, [DOI: 10.1103/PhysRevB.99.125416] [IF: 3.58, SJR: 1.81]</nothing></item><item key="49"><nothing>Denis Novitsky, Alexander Shalin, "All-Optical Transmission Modulation Due to Inelastic Interactions of Ultrashort Pulses in a Disordered Resonant Medium", Annalen der Physik, vol. 531(2), pp. 1800405, 2019, [DOI: 10.1002/andp.201800405] [IF: 3.32, SJR: 1.28]</nothing></item><item key="50"><nothing>Alexander Shalin, Andrei Evlyukhin, "Nano-Antennas Based on Silicon-Gold Nanostructures", Scientific Reports, vol. 9, pp. 338, 2019, [DOI: 10.1038/s41598-018-36851-w] [IF: 4.00, SJR: 1.34]</nothing></item><item key="51"><nothing>Pavel Terekhov, Kseniia Baryshnikova, Alexander Shalin, Andrei Evlyukhin, "Transmission and reflection features of all-dielectrics metasurfaces with electric and magnetic resonances", Proceedings of SPIE, vol. 10927, pp. 109270, 2019, [DOI: 10.1117/12.2506973] [SJR: 0.24]</nothing></item><item key="52"><nothing><![CDATA[Egor Gurvitz, Konstantin Ladutenko, Andrei Evlyukhin, Alexander Shalin, "The high-order toroidal moments and anapole states in all-dielectric photonics", Laser &amp; Photonics Reviews, vol. 13, pp. 1800266, 2019, [DOI: 10.1002/lpor.201800266] [IF: 10.66, SJR: 4.01]]]></nothing></item><item key="53"><nothing>Aleksandra Ivinskaia, Natalia Kostina, Mihail Petrov, Andrey Bogdanov, Alexander Shalin, "Optomechanical manipulation with hyperbolic metasurfaces", ACS Photonics, vol. 5, pp. 4371-4377, 2018, [DOI: 10.1021/acsphotonics.8b00775] [IF: 7.14, SJR: 2.98]</nothing></item><item key="54"><nothing>Aleksandra Ivinskaia, Natalia Kostina, Mihail Petrov, Andrey Bogdanov, Alexander Shalin, "Tractor beams at metamaterial substrates", Journal of Physics: Conference Series, vol. 1092, pp. 12132, 2018, [DOI: 10.1088/1742-6596/1092/1/012132] [SJR: 0.24]</nothing></item><item key="55"><nothing>Kseniia Baryshnikova, Dmitry Filonov, Andrei Evlyukhin, Alexey Kadochkin, Alexander Shalin, "Giant magnetoelectric field separation via anapole-type states in high-index dielectric structures", Physical Review B, vol. 98, pp. 165419, 2018, [DOI: 10.1103/PhysRevB.98.165419] [IF: 3.74, SJR: 1.50]</nothing></item><item key="56"><nothing>Alexander Shalin, "New 2D-graphene hybrid composites as an effective elemental base of optical nanodevices", Beilstein Journal of Nanotechnology, vol. 9, pp. 1321&#x2013;1327, 2018, [DOI: 10.3762/bjnano.9.125] [IF: 2.27, SJR: 0.77]</nothing></item><item key="57"><nothing>Andrei Evlyukhin, Alexander Shalin, "Femtosecond laser printing of single Ge and SiGe nanoparticles with electric and magnetic optical resonances", ACS Photonics, vol. 5, pp. 977-983, 2018, [DOI: 10.1021/acsphotonics.7b01275] [IF: 7.14, SJR: 2.98]</nothing></item><item key="58"><nothing>Kseniia Baryshnikova, Andrei Evlyukhin, Alexander Shalin, "Magnetic hot-spots in hollow silicon cylinders", Journal of Physics: Conference Series, vol. 741, pp. 12156, 2018, [DOI: 10.1088/1742-6596/741/1/012156] [SJR: 0.24]</nothing></item><item key="59"><nothing>Angeleene Ang, Alexander Shalin, "Scattering Forces within a Left-Handed Photonic Crystal", Scientific Reports, vol. 7, pp. 41014, 2018, [DOI: 10.1038/srep41014] [IF: 4.01, SJR: 1.41]</nothing></item><item key="60"><nothing>Andrey Novitsky, Alexander Shalin, "Spherically symmetric inhomogeneous bianisotropic media: Wave propagation and light scattering", Physical Review A, vol. 95, pp. 53818, 2018, [DOI: 10.1103/PhysRevA.95.053818] [IF: 2.91, SJR: 1.27]</nothing></item><item key="61"><nothing>Kseniia Baryshnikova, Andrey Novitsky, Andrei Evlyukhin, Alexander Shalin, "Magnetic field concentration with coaxial silicon nanocylinders in the optical spectral range", Journal of the Optical Society of America B: Optical Physics, vol. 34, pp. D36-D41, 2018, [DOI: https://doi.org/10.1364/JOSAB.34.000D36] [IF: 2.05, SJR: 0.86]</nothing></item><item key="62"><nothing>Kseniia Baryshnikova, Alexander Shalin, "Near-field analysis of the anapole states in high-index particles", AIP Conference Proceedings, vol. 1874, pp. 30003, 2018, [DOI: 10.1063/1.4998032] [SJR: 0.17]</nothing></item><item key="63"><nothing>Egor Gurvitz, Alexander Shalin, "Simulation of circular dichroism enhancement in gold nanocuboids array lled by chiral medium for optical frequency range", 2017 Days on Diffraction (DD), pp. 159-166, 2018, [DOI: 10.1109/DD.2017.8168015] </nothing></item><item key="64"><nothing>Angeleene Ang, Alexander Shalin, "&#x2018;Photonic Hook&#x2019; based optomechanical nanoparticle manipulator", Scientific Reports, vol. 8, pp. 2029, 2018, [DOI: 10.1038/s41598-018-20224-4] [IF: 4.01, SJR: 1.41]</nothing></item><item key="65"><nothing>Ivan Shishkin, Egor Gurvitz, Alexey Slobozhanyuk, Alexander Shalin, "Circular Dichroism Enhancement in Plasmonic Nanorod Metamaterials", Optics Express, vol. 26, pp. 17841-17848, 2018, [DOI: 10.1364/OE.26.017841] [IF: 3.56, SJR: 1.47]</nothing></item><item key="66"><nothing>Pavel Terekhov, Kseniia Baryshnikova, Alexander Shalin, Andrei Evlyukhin, "Optical multipole resonances of non-spherical silicon nanoparticles and the influence of illumination direction", Optical Components and Materials XV, vol. 10528, pp. 1052802, 2018, [DOI: 10.1117/12.2289894] [IF: 0.56, SJR: 0.24]</nothing></item><item key="67"><nothing>Alexander Shalin, "Photonic hook: A new curved light beam", Optics Letters, vol. 43, pp. 771-774, 2018, [DOI: 10.1364/OL.43.000771] [IF: 3.87, SJR: 1.71]</nothing></item><item key="68"><nothing>Natalia Kostina, Mihail Petrov, Aleksandra Ivinskaia, Andrey Bogdanov, Alexander Shalin, "Optical binding of two nanoparticles near interface", 2017 Days on Diffraction (DD), 2017, [DOI: 10.1109/DD.2017.8168020] </nothing></item><item key="69"><nothing>Aleksandra Ivinskaia, Mihail Petrov, Andrey Bogdanov, Ivan Shishkin, Alexander Shalin, "Plasmon-assisted optical trapping and anti-trapping", Light: Science and Applications, vol. 6, pp. e16258, 2017, [DOI: 10.1038/lsa.2016.258] [IF: 14.10, SJR: 5.58]</nothing></item><item key="70"><nothing>Pavel Terekhov, Kseniia Baryshnikova, Alexander Shalin, Andrei Evlyukhin, "Multipolar response of nonspherical silicon nanoparticles in the visible and near-infrared spectral ranges", Physical Review B, vol. 96, pp. 35443, 2017, [DOI: 10.1103/PhysRevB.96.035443] [IF: 3.81, SJR: 2.34]</nothing></item><item key="71"><nothing>Pavel Terekhov, Kseniia Baryshnikova, Alexander Shalin, Andrei Evlyukhin, "Multipole optical response of silicon nanoparticles of a conical shape", 2017 Days on Diffraction (DD), pp. 310-315, 2017, [DOI: 10.1109/DD.2017.8168045] </nothing></item><item key="72"><nothing>Angeleene Ang, Alexander Shalin, "Electromagnetic forces in negatively refracting photonic crystals", Proceedings of the International Conference Days on Diffraction 2017, pp. 13-17, 2017, [DOI: 10.1109/DD.2017.8167987] </nothing></item><item key="73"><nothing>Pavel Terekhov, Kseniia Baryshnikova, Alexander Shalin, Andrei Evlyukhin, "Toroidal dipole associated resonant forward scattering of light by silicon nanoparticles", 2017 Progress In Electromagnetics Research Symposium - Spring (PIERS), pp. 2325-2328, 2017, [DOI: 10.1109/PIERS.2017.8262140] </nothing></item><item key="74"><nothing>Pavel Terekhov, Kseniia Baryshnikova, Andrei Evlyukhin, Alexander Shalin, "Destructive interference between electric and toroidal dipole moments in TiO2 cylinders and frustums with coaxial voids", Journal of Physics: Conference Series, vol. 929, pp. 12065, 2017, [DOI: 10.1088/1742-6596/929/1/012065] [SJR: 0.24]</nothing></item><item key="75"><nothing>Pavel Terekhov, Kseniia Baryshnikova, Alexander Shalin, Andrei Evlyukhin, "Resonant forward scattering of light by high-refractive-index dielectric nanoparticles with toroidal dipole contribution", Optics Letters, vol. 42, pp. 835-838, 2017, [DOI: 10.1364/OL.42.000835] [IF: 3.59, SJR: 1.79]</nothing></item><item key="76"><nothing>Pavel Terekhov, Kseniia Baryshnikova, Alexander Shalin, Andrei Evlyukhin, Irina Khromova, "Nonradiating anapole modes of dielectric particles in terahertz range", 2016 Days on Diffraction (DD), pp. 406-409, 2016, [DOI: 10.1109/DD.2016.7756883] </nothing></item><item key="77"><nothing>Aleksandra Ivinskaia, Mihail Petrov, Andrey Bogdanov, Alexander Shalin, Ivan Shishkin, "Plasmonic substrates for optical tweezers", 2016 Days on Diffraction (DD), pp. 198-201, 2016, [DOI: 10.1109/DD.2016.7756841] </nothing></item><item key="78"><nothing>Alexander Shalin, Ivan Mukhin, "Optically asymmetric structures for transparent electrodes", 2016 Days on Diffraction (DD), pp. 234-236, 2016, [DOI: 10.1109/DD.2016.7756848] </nothing></item><item key="79"><nothing>Dmitry Filonov, Alexander Shalin, "Asymmetric backscattering from the hybrid magneto-electric meta particle", Applied Physics Letters, vol. 109, pp. 203503, 2016, [DOI: 10.1063/1.4967238] [IF: 3.41, SJR: 1.67]</nothing></item><item key="80"><nothing>Dmitry Filonov, Alexander Shalin, Ivan Iorsh, Pavel Belov, "Controlling electromagnetic scattering with wire metamaterial resonators", Journal of the Optical Society of America A: Optics and Image Science, and Vision, vol. 33, pp. 1910-1916, 2016, [DOI: 10.1364/JOSAA.33.001910] [IF: 1.46, SJR: 0.92]</nothing></item><item key="81"><nothing>Alexander Shalin, Ivan Mukhin, Andrey Krasilin, Pavel Belov, "Solar photovoltaics: current state and trends", Physics-Uspekhi, vol. 186, pp. 727-772, 2016, [DOI: 10.3367/UFNr.2016.02.037703] [IF: 2.30, SJR: 0.85]</nothing></item><item key="82"><nothing>Alexander Shalin, Andrey Bogdanov, Pavel Belov, "Attraction Optical Forces inside Hyperbolic Metamaterials", Conference on Lasers and Electro-Optics (CLEO), 2016, [DOI: 10.1364/CLEO_AT.2016.JW2A.17] [SJR: 0.10]</nothing></item><item key="83"><nothing>Andrey Bogdanov, Alexander Shalin, "Optical pulling force in the vicinity of plasmonic interfaces", Conference on Lasers and Electro-Optics (CLEO), 2016, [DOI: 10.1364/CLEO_QELS.2016.FM2B.5] [SJR: 0.10]</nothing></item><item key="84"><nothing>Andrey Bogdanov, Alexander Shalin, "Optical forces in nanorod metamaterials: beyond the effective medium approach", Conference on Lasers and Electro-Optics (CLEO), 2016, [DOI: 10.1364/CLEO_AT.2016.JW2A.32] [SJR: 0.10]</nothing></item><item key="85"><nothing>Dmitry Markovich, Kseniia Baryshnikova, Alexander Shalin, Anton Samusev, Pavel Belov, "Enhancement of artificial magnetism via resonant bianisotropy", Scientific Reports, vol. 6, pp. 22546, 2016, [DOI: 10.1038/srep22546] [IF: 4.26, SJR: 1.69]</nothing></item><item key="86"><nothing><![CDATA[Mihail Petrov, Andrey Bogdanov, Alexander Shalin, "Surface plasmon polariton assisted optical pulling force", Laser &amp; Photonics Reviews, vol. 10, pp. 116-122, 2016, [DOI: 10.1002/lpor.201500173] [IF: 8.43, SJR: 4.01]]]></nothing></item><item key="87"><nothing>Pavel Voroshilov, Pavel Belov, Alexander Shalin, "Enhancement of photovoltaic absorption in thin-film silicon solar cells by all-dielectric light-trapping and antireflective coatings", 2015 9th International Congress on Adv. Electromagnetic Mat. in Microwaves and Optics (METAMAT.), pp. 517-519, 2015, [DOI: 10.1109/MetaMaterials.2015.7342508] </nothing></item><item key="88"><nothing>Mihail Petrov, Andrey Bogdanov, Alexander Shalin, "Optical forces induced at the metal surface", 2015 Days on Diffraction (DD), 2015, [DOI: 10.1109/DD.2015.7354869] </nothing></item><item key="89"><nothing>Alexander Shalin, Pavel Belov, Yuri Kivshar, "Scattering suppression with homogeneous ENZ-media", 2015 Days on Diffraction (DD), 2015, [DOI: 10.1109/DD.2015.7354879] </nothing></item><item key="90"><nothing>Pavel Dmitriev, Dmitry Baranov, Ivan Mukhin, Anton Samusev, Pavel Belov, Alexander Shalin, "Antireflective properties of periodic nanopore arrays", 2015 Days on Diffraction (DD), 2015, [DOI: 10.1109/DD.2015.7354837] </nothing></item><item key="91"><nothing>Dmitry Filonov, Alexander Shalin, Pavel Belov, "Emulation of complex optical phenomena with radio waves: Tailoring scattering characteristics with wire metamaterial", 2015 IEEE Int. Conf. on Microwaves, Communications, Antennas and Electronic Systems (COMCAS), pp. 1-2, 2-4, 2015, [DOI: 10.1109/COMCAS.2015.7360417] </nothing></item><item key="92"><nothing>Andrey Bogdanov, Alexander Shalin, "Optical forces in nanorod metamaterial", Scientific Reports, vol. 5, pp. 15846, 2015, [DOI: 10.1038/srep15846] [IF: 5.23, SJR: 2.03]</nothing></item><item key="93"><nothing>Kseniia Baryshnikova, Alexey Kadochkin, Alexander Shalin, "Nanostructural Antireflecting Coatings: Classification Analysis (A Review)", Optics and Spectroscopy, vol. 119, pp. 367&#x2013;380, 2015, [DOI: 10.1134/S0030400X15090040] [IF: 0.64, SJR: 0.27]</nothing></item><item key="94"><nothing>Alexander Shalin, Pavel Belov, Yuri Kivshar, "Suppression of Light Scattering with ENZ-metamaterials", Progress in Electromagnetics Research Symposium, pp. 1178-1181, 2015, </nothing></item><item key="95"><nothing>Alexander Shalin, Andrey Bogdanov, Pavel Belov, "Optical pulling forces in hyperbolic metamaterials", Physical Review A, vol. 91, pp. 63830, 2015, [DOI: 10.1103/PhysRevA.91.063830] [IF: 2.77, ]</nothing></item><item key="96"><nothing>Pavel Voroshilov, Pavel Belov, Alexander Shalin, "Light-trapping and antireflective coatings for amorphous Si-based thin film solar cells", Journal of Applied Physics, vol. 117, pp. 203101, 2015, [DOI: 10.1063/1.4921440] [IF: 2.10, SJR: 0.82]</nothing></item><item key="97"><nothing>Alexander Chebykin, Alexey Orlov, Alexander Shalin, Alexander Poddubny, Pavel Belov, "Strong Purcell effect in anisotropic epsilon-near-zero metamaterials", Physical Review B, vol. 91, pp. 205126, 2015, [DOI: 10.1103/PhysRevB.91.205126] [IF: 3.72, ]</nothing></item><item key="98"><nothing>Alexander Shalin, "Nonreciprocal Optical Interaction of Dissimilar Particles", CLEO: QELS_Fundamental Science 2015, 2015, [DOI: 10.1364/CLEO_QELS.2015.FF2C.6] </nothing></item><item key="99"><nothing>Dmitry Baranov, Pavel Dmitriev, Ivan Mukhin, Anton Samusev, Pavel Belov, Alexander Shalin, "Broadband antireflective coatings based on two-dimensional arrays of subwavelength nanopores", Applied Physics Letters, vol. 106, pp. 171913, 2015, [DOI: 10.1063/1.4919589] [IF: 3.14, SJR: 1.50]</nothing></item><item key="100"><nothing>Alexander Shalin, Alexey Orlov, Ivan Iorsh, Pavel Belov, Yuri Kivshar, "Scattering suppression from arbitrary objects in spatially dispersive layered metamaterials", Physical Review B, vol. 91, pp. 125426, 2015, [DOI: 10.1103/PhysRevB.91.125426] [IF: 3.72, SJR: 2.76]</nothing></item><item key="101"><nothing>Alexander Shalin, "Optical Pulling Forces in &#x201C;Nanoparticles Dimer in the Structured Field&#x201D; System", Scientific and Technical Journal of Information Technologies, Mechanics and Optics, vol. 15, pp. 43586, 2015, [DOI: 10.17586/2226-1494-2015-15-1-1-5] </nothing></item><item key="102"><nothing>Alexander Shalin, "Actio et reactio in optical binding", Optics Express, vol. 23, pp. 247-252, 2015, [DOI: 10.1364/OE.23.000247] [IF: 3.15, SJR: 1.91]</nothing></item><item key="103"><nothing>Alexey Slobozhanyuk, Ivan Iorsh, Alexander Shalin, Pavel Belov, "Purcell effect in hyperbolic metamaterial resonators", Physical Review B, vol. 92, pp. 195127, 2015, [DOI: 10.1103/PhysRevB.92.195127] [IF: 3.72, SJR: 2.76]</nothing></item><item key="104"><nothing>Sergei Krasikov, Ivan Iorsh, Alexander Shalin, Pavel Belov, "Levitation of finite-size electric dipole over epsilon-near-zero metamaterial", Physica Status Solidi - Rapid Research Letters, vol. 8, pp. 1015-1018, 2014, [DOI: 10.1002/pssr.201409396] [IF: 2.34, SJR: 1.16]</nothing></item><item key="105"><nothing>Alexander Shalin, Pavel Voroshilov, Pavel Belov, "Non-plasmonic light trapping for thin film solar cells", 2014 8th International Congress on Advanced Electromagnetic Materials in Microwaves and Optics, pp. 433-436, 2014, [DOI: 10.1109/MetaMaterials.2014.6948586] </nothing></item><item key="106"><nothing>Alexander Shalin, "Ultra-Fast Motion of Optically Driven Metallic Nanoparticles", Conference on Lasers and Electro-Optics (CLEO), vol. JW2A, pp. JW2A.107, 2014, [DOI: 10.1364/CLEO_AT.2014.JW2A.107] [SJR: 0.10]</nothing></item><item key="107"><nothing>Alexander Shalin, Pavel Belov, Yuri Kivshar, "Classical and Quantum Opto-mechanics with Plasmonics and Metamaterials", Conference on Lasers and Electro-Optics (CLEO), vol. FTu3C, pp. FTu3C.2, 2014, [DOI: 10.1364/CLEO_QELS.2014.FTu3C.2] [SJR: 0.10]</nothing></item><item key="108"><nothing>&#x410;&#x43B;&#x435;&#x43A;&#x441;&#x430;&#x43D;&#x434;&#x440; &#x428;&#x430;&#x43B;&#x438;&#x43D;, "Non-absorbing metamaterial with a dispersion of the effective refractive index (in Russian)", University proceedings. Volga region, vol. 4, pp. 119-132, 2013, </nothing></item><item key="109"><nothing><![CDATA[Alexander Shalin, Pavel Belov, Yuri Kivshar, "Nano-opto-mechanical effects in plasmonic waveguides", Laser &amp; Photonics Reviews, vol. 8, pp. 131–136, 2013, [DOI: 10.1002/lpor.201300109] [IF: 9.31, SJR: 5.13]]]></nothing></item><item key="110"><nothing>Alexander Shalin, Pavel Belov, Yuri Kivshar, "Optomechanical &#x201C;nonlinear&#x201D; light modulation on nano-scales", 2013 7th International Congress on Advanced Electromagnetic Materials in Microwaves and Optics, pp. 346-348, 2013, [DOI: 10.1109/MetaMaterials.2013.6809048] </nothing></item><item key="111"><nothing>Alexander Shalin, Pavel Voroshilov, Pavel Belov, "Photovoltaic absorption enhancement in thin-film solar cells by non-resonant beam collimation by submicron dielectric particles", Journal of Applied Physics, vol. 114, pp. 103104(1-6), 2013, [DOI: 10.1063/1.4820573] [IF: 2.19, SJR: 1.16]</nothing></item><item key="112"><nothing>Alexander Shalin, "Plasmonic nanostructures for local field enhancement in the UV region", Photonics and Nanostructures - Fundamentals and Applications, vol. 12, pp. 2&#x2013;8, 2013, [DOI: 10.1016/j.photonics.2013.08.004] [IF: 1.79, SJR: 0.96]</nothing></item><item key="113"><nothing>&#x410;&#x43B;&#x435;&#x43A;&#x441;&#x430;&#x43D;&#x434;&#x440; &#x428;&#x430;&#x43B;&#x438;&#x43D;, "Optical accelerator for nano-particles (in Russian)", Nelineyniy mir, vol. 2, pp. 82-83, 2013, </nothing></item><item key="114"><nothing>Alexander Shalin, "Approximate Model for Universal Broadband Antireflection Nano-Structure", Progress In Electromagnetics Research B, vol. 47, pp. 127-144, 2012, [DOI: 10.2528/PIERB12101611] [SJR: 0.57]</nothing></item><item key="115"><nothing>Alexander Shalin, "Plasmonic Nanostructures as Accelerators for Nanoparticles: Optical Nanocannon", Plasmonics, vol. 8, pp. 625-629, 2012, [DOI: 10.1007/s11468-012-9447-0] [IF: 2.43, SJR: 1.22]</nothing></item><item key="116"><nothing>Alexander Shalin, "Optical forces in plasmonic nanoantennas", Quantum Electronics, vol. 42, pp. 355-360, 2012, [DOI: 10.1070/QE2012v042n04ABEH014740] [IF: 0.82, SJR: 0.46]</nothing></item><item key="117"><nothing>Alexander Shalin, "Effect of Argon buffer gas and the dimer component on the optical properties of sodium vapor", Journal of Applied Spectroscopy, vol. 79, pp. 113-119, 2012, [DOI: 10.1007/s10812-012-9571-9] [IF: 0.69, SJR: 0.18]</nothing></item><item key="118"><nothing>&#x410;&#x43B;&#x435;&#x43A;&#x441;&#x430;&#x43D;&#x434;&#x440; &#x428;&#x430;&#x43B;&#x438;&#x43D;, "&#x41D;&#x430;&#x43D;&#x43E;&#x43C;&#x430;&#x442;&#x435;&#x440;&#x438;&#x430;&#x43B; &#x43F;&#x43E;&#x432;&#x44B;&#x448;&#x435;&#x43D;&#x43D;&#x43E;&#x439; &#x43F;&#x440;&#x43E;&#x437;&#x440;&#x430;&#x447;&#x43D;&#x43E;&#x441;&#x442;&#x438;", &#x418;&#x437;&#x432;&#x435;&#x441;&#x442;&#x438;&#x44F; &#x421;&#x430;&#x43C;&#x430;&#x440;&#x441;&#x43A;&#x43E;&#x433;&#x43E; &#x43D;&#x430;&#x443;&#x447;&#x43D;&#x43E;&#x433;&#x43E; &#x446;&#x435;&#x43D;&#x442;&#x440;&#x430; &#x420;&#x410;&#x41D;, vol. 4, pp. 1114-1119, 2012, </nothing></item><item key="119"><nothing>&#x410;&#x43B;&#x435;&#x43A;&#x441;&#x430;&#x43D;&#x434;&#x440; &#x428;&#x430;&#x43B;&#x438;&#x43D;, "Optical forces in light-concentrators (in Russian)", Nelineyniy mir, vol. 10, pp. 118-119, 2012, </nothing></item><item key="120"><nothing>&#x410;&#x43B;&#x435;&#x43A;&#x441;&#x430;&#x43D;&#x434;&#x440; &#x428;&#x430;&#x43B;&#x438;&#x43D;, "&#x41C;&#x435;&#x442;&#x43E;&#x434; &#xAB;&#x43C;&#x43D;&#x438;&#x43C;&#x43E;&#x439; &#x433;&#x440;&#x430;&#x43D;&#x438;&#x446;&#x44B;&#xBB; &#x432; &#x438;&#x441;&#x441;&#x43B;&#x435;&#x434;&#x43E;&#x432;&#x430;&#x43D;&#x438;&#x438; &#x43E;&#x43F;&#x442;&#x438;&#x447;&#x435;&#x441;&#x43A;&#x438;&#x445; &#x441;&#x432;&#x43E;&#x439;&#x441;&#x442;&#x432; &#x443;&#x43F;&#x43E;&#x440;&#x44F;&#x434;&#x43E;&#x447;&#x435;&#x43D;&#x43D;&#x44B;&#x445; &#x43D;&#x430;&#x43D;&#x43E;&#x441;&#x442;&#x440;&#x443;&#x43A;&#x442;&#x443;&#x440;", &#x41D;&#x430;&#x43D;&#x43E;&#x441;&#x438;&#x441;&#x442;&#x435;&#x43C;&#x44B;: &#x444;&#x438;&#x437;&#x438;&#x43A;&#x430;, &#x445;&#x438;&#x43C;&#x438;&#x44F;, &#x43C;&#x430;&#x442;&#x435;&#x43C;&#x430;&#x442;&#x438;&#x43A;&#x430;, vol. 3, pp. 78-83, 2012, </nothing></item><item key="121"><nothing>Alexander Shalin, "Optical Accelerator of Nanoparticles", Journal of Communications Technology and Electronics, vol. 56, pp. 976-984, 2011, [DOI: 10.1134/S1064226911080109] [IF: 0.38, SJR: 0.25]</nothing></item><item key="122"><nothing>Alexander Shalin, "Metallodielectric Nanocomposites with Enhanced Transparency", Physics of Metals and Metallography, vol. 112, pp. 01.&#x434;&#x435;&#x43A;, 2011, [DOI: 10.1134/S0031918X11010340] [IF: 0.54, SJR: 0.43]</nothing></item><item key="123"><nothing>Alexander Shalin, "Optically Induced Forces in a Nanoparticle-on-Substrate System", Physics of Metals and Metallography, vol. 112, pp. 36-43, 2011, [DOI: 10.1134/S0031918X11010352] [IF: 0.54, SJR: 0.43]</nothing></item><item key="124"><nothing>Alexander Shalin, "Optical blooming of a medium by nanocrystal layers", Quantum Electronics, vol. 41, pp. 163-169, 2011, [DOI: 10.1070/QE2011v041n02ABEH014331] [IF: 0.83, SJR: 0.49]</nothing></item><item key="125"><nothing>Alexander Shalin, "Optical Properties of Nanocrystal Layers Embedded in a Carrier Medium", Journal of Communications Technology and Electronics, vol. 56, pp. 14-26, 2011, [DOI: 10.1134/S1064226911010098] [IF: 0.38, SJR: 0.25]</nothing></item><item key="126"><nothing>&#x410;&#x43B;&#x435;&#x43A;&#x441;&#x430;&#x43D;&#x434;&#x440; &#x428;&#x430;&#x43B;&#x438;&#x43D;, "Quasi-classical theory of optical properties of nickel nano-clusters (in Russian)", Nanotechnics, vol. 1(25), pp. 42, 2011, </nothing></item><item key="127"><nothing>&#x410;&#x43B;&#x435;&#x43A;&#x441;&#x430;&#x43D;&#x434;&#x440; &#x428;&#x430;&#x43B;&#x438;&#x43D;, "Broadband optical blooming of media by single nano-crystalline layer (in Russian)", Nelineyniy mir, vol. 9, pp. 43589, 2011, </nothing></item><item key="128"><nothing>Alexander Shalin, "Optical Antireflection of a Medium by Nanostructural Layers", Progress In Electromagnetics Research B, vol. 31, pp. 45-66, 2011, [DOI: 10.2528/PIERB11032509] [SJR: 0.72]</nothing></item><item key="129"><nothing>Alexander Shalin, "Microscopic theory of optical properties of composite media with chaotically distributed nanoparticles", Quantum Electronics, vol. 40, pp. 1004-1011, 2010, [DOI: 10.1070/QE2010v040n11ABEH014330] [IF: 0.81, SJR: 0.46]</nothing></item><item key="130"><nothing>Alexander Shalin, "Negative Effective Refractive Index of Metallic Nanoparticles in Disordered Nanocomposites", Physics of Metals and Metallography, vol. 110, pp. 119-130, 2010, [DOI: 10.1134/S0031918X10080028] [IF: 0.47, SJR: 0.36]</nothing></item><item key="131"><nothing>Alexander Shalin, "Anomalies of Light Transmission In Structurally Ordered Nanocomposites", Journal of Russian Laser Research, vol. 31, pp. 390-402, 2010, [DOI: 10.1007/s10946-010-9159-x] [IF: 0.64, SJR: 0.27]</nothing></item><item key="132"><nothing>Alexander Shalin, "Broadband Blooming of a Medium Modified by an Incorporated Layer of Nanocavities", JETP Letters, vol. 91, pp. 636-642, 2010, [DOI: 10.1134/S0021364010120052] [IF: 1.56, SJR: 0.79]</nothing></item><item key="133"><nothing>&#x410;&#x43B;&#x435;&#x43A;&#x441;&#x430;&#x43D;&#x434;&#x440; &#x428;&#x430;&#x43B;&#x438;&#x43D;, "Absolutely transparent nano-material (in Russian)", Nelineyniy mir, vol. 8, pp. 68, 2010, </nothing></item></response>
