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1) 2024–2026. Supervisor of the Russian Science Foundation project No. 24-72-00042, “Magnetophotonic micro- and nanodevices for active light control.” Supervisor: A. Yu. Frolov. 3 millions rubbles (235 000 yuan) 2) 2024–2026. Principal investigator of the Russian Science Foundation project No. 24-12-00210: Nonlinear ultrafast photonics and magnetooptics of resonant plasmonic structures. Supervisor: T. V. Dolgova. 18 millions rubbles (1 396 983 yuan) 3) May 16, 2023 – December 31, 2024. Participant (main executor) of the Russian Science Foundation project No. 20-12-00389. High‑order Fano resonances in microscopic dielectric spheres and their applications for generating electric and magnetic fields, optical vortices, optical nanojets, and nanoscopy. Supervisor: B. S. Lukyanchuk. 18 millions rubbles (1 396 983 yuan) 4) January 1, 2024 – December 31, 2025. Grant participant of the Scientific and Educational Schools of Lomonosov Moscow State University, “Photonic plasmonic and dielectric nanodevices combined with luminescent lanthanide complexes.” Supervisors: Lukyanchuk B.S., Utochnikova V.V. 4 million rubles (310 440 yuan) 5) April 14, 2023 – February 29, 2024. Participant. Commercial contract, FSUE “RFNC‑VNIIEF”. Photonic artificial intelligence. Supervisor: Fedyanin A.A. 6) April 3, 2023 – October 15, 2025. Participant in a business contract, FSUE “RFNC‑VNIIEF”. Research in the interests of developing the element base for analog photonic computing devices based on the principles of integrated photonics. Supervisor: Fedyanin A.A. 7) January 1, 2022 – December 31, 2026. Participant. State budget, section 0110. Theoretical and applied metaphotonics. Supervisor: Lukyanchuk B.S. 8) August 1, 2020 – February 28, 2021. Participant. Commercial contract, LLC “Samsung Research Center”. Development of a backlight source for an augmented reality system based on a nonlinear metasurface combined with a vertically emitting laser. Supervisor: Fedyanin A.A. 9) March 23, 2020 – December 31, 2021. Participant. Grant of the President of the Russian Federation No. 075-15-2020-052. New photonic materials for ultra‑fast light control. Supervisor: A. A. Fedyanin. 10) February 19, 2020 – February 19, 2023. Participant. RFBR grant No. 20-02-00758\20. Dynamic photonics of semiconductor and magnetoplasmonic metasurfaces in the terahertz and near‑infrared ranges. Supervisor: T. V. Dolgova. 4 million rubles (310 440 yuan) 11) December 28, 2018 – December 25, 2021. Participant. RFBR grant 19-02-00876. Super‑resolution optical microscopy of resonant modes of fully dielectric nanoantennas. Supervisor: V. I. Panov. 4 million rubles (310 440 yuan) 12) November 19, 2018 – December 31, 2019. Participant. Grant of the President of the Russian Federation No. 14.W02.18.6862‑NSh. Femtosecond nonlinear optics of dielectric, semiconductor, and hybrid metasurfaces. Supervisor: Fedyanin A.A. 5 million rubles (388 051 yuan) 13) October 24, 2018 - June 30, 2022. Participant. The State Foundation.to support projects of the National Technology Initiative. The Center for Quantum Technologies of the MSU Faculty of Physics. Supervisors: Kulik S.P., Sysoev N.N., Snigirev O.V.
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1. A.A. Nerovnaya, A.Yu. Frolov, A. A. Fedyanin, “Spatially Resolved Magnetic-Field-Induced Intensity Modulation Enhancement under the Goos–Hänchen Effect in Magnetophotonic Crystals” ACS Photonics, vol. 13, № 12, pp. 3501-3508 (2026) DOI: 10.1021/acsphotonics.6c00737 IF=6.7, Q1, WOS, Scopus, RSCI 2. A.Yu. Gladkikh, A.Yu. Frolov, V. V. Utochnikova, “Molecular Photonics Meets OLED Technology: The Untapped Potential of Lanthanide Emitters”, Optical Materials, vol. 174, pp. 117906 (2026) DOI: 10.1016/j.optmat.2026.117906 IF=4.2, Q1, WOS, Scopus, RSCI 3. A.Yu. Frolov, A.Yu. Gladkikh, M.P. Belov, V.V. Popov, V.V. Utochnikova, A.A. Fedyanin, “Plasmonic Enhancement and Angular Control of Narrow-Emitting Europium-Based Luminescence”, Journal of Physical Chemistry Letters, vol. 16, № 44, pp. 11590-11596 (2025) DOI: 10.1021/acs.jpclett.5c02045 IF=5.1, Q1, WOS, Scopus, RSCI 4. K.A. Mamian, V. V. Popov, A.Yu. Frolov, A.A. Fedyanin “Tailoring transverse magneto-optical Kerr effect enhancement in Mie-resonant nanowire-based metasurfaces”, Applied Physics Letters, vol. 126, № 8, pp. 081701 (2025) DOI: 10.1063/5.0257020 IF=3.6, Q1, WOS, Scopus, RSCI 5. Мамян К.А., Фролов А.Ю., Федянин А.А. 2025 Программа для точного широкополосного измерения экваториального магнитооптического эффекта Керра (SOFT) №2025615541 https://elibrary.ru/item.asp?id=80526348 RSCI Mamyan K.A., Frolov A.Yu., Fedyanin A.A. 2025. Program for precise broadband measurement of the equatorial magneto‑optical Kerr effect. (Patent of software) 6. M. A. Kiryanov, I. A. Novikov, A. Yu. Frolov, T. V. Dolgova, A. A. Fedyanin, “Surface‐Plasmon‐Assisted Control of Ultrafast Optical Relaxation Traces”, Laser and Photonics Reviews pp. 2500053 (2025) DOI: 10.1002/lpor.202500053 IF=10.7, Q1, WOS, Scopus, RSCI 7. K.A. Mamian, A.Y. Frolov, V.V. Popov, A.A. Fedyanin, “Transverse Magneto-Optical Kerr Effect Enhancement in Si–Ni Nanogratings by Mie and Surface Lattice Resonances”, Physics of Metals and Metallography 125 № 2 pp. 118-123 (2024) DOI: 10.1134/S0031918X23603074 IF=0.96, Q3, WOS, Scopus, RSCI 8. D.V. Murzin, V.K. Belyaev, K.A. Mamian, F. Groß, J. Gräfe, A.Y. Frolov, A.A. Fedyanin, V.V. Rodionova, “Ni80Fe20 thickness optimization of magnetoplasmonic crystals for magnetic field sensing” Sensors and Actuators A: Physical 376, pp. 11552 (2024) DOI: 10.1016/j.sna.2024.115552 IF=4.8, Q1, WOS, Scopus, RSCI 9. A.V. Makarova, A.A. Nerovnaya, D.N. Gulkin, V.V. Popov, A.Yu. Frolov, A.A. Fedyanin, “Goos–Hänchen Shift Spatially Resolves Magneto-Optical Kerr Effect Enhancement in Magnetoplasmonic Crystals”, ACS Photonics 11 (4) pp. 1619-1626 (2024) DOI: 10.1021/acsphotonics.3c01844 IF=6.7, Q1, WOS, Scopus, RSCI 10. D. V. Murzin, A. Yu. Frolov, K. A. Mamian, V. K. Belyaev, A. A. Fedyanin, V. V. Rodionova, “Low coercivity magnetoplasmonic crystal based on a thin permalloy film for magnetic field sensing applications",Optical Materials Express vol. 13, № 1, pp. 171-178 (2023) DOI: 10.1364/ome.478112 IF=2.72, Q2, WOS, Scopus, RSCI 11. I.A. Novikov, M.A. Kiryanov, A.Yu. Frolov, V.V. Popov, T.V. Dolgova, A.A. Fedyanin, “Spatially Inhomogeneous Ultrafast Demagnetization of Nickel Magnetoplasmonic Crystal”, JETP Letters 118 (8) pp. 584-589 (2023) DOI: 10.1134/s0021364023602853 IF=1.1, Q3, WOS, Scopus, RSCI 12. Фролов А.Ю. Монография «Сканирующая ближнепольная оптическая микроскопия кремниевых наноантенн и магнитооптическая спектроскопия плазмонных наноантенн», место издания Издательство Московского Университета Москва, ISBN 978-5-19-011866-7, 256 с. (2023) Frolov A.Yu. “Scanning near-field optical microscopy of silicon nanoantennas and magneto-optical spectroscopy of plasmonic nanoantennas” Moscow University Press 2023 https://search.rsl.ru/ru/record/07000524903 https://viewer.rsl.ru/ru/rsl07000524903 13. M. A. Kiryanov, A. Yu. Frolov, I. A. Novikov, P. A. Kipp, P. K. Nurgalieva, V. V. Popov, A. A. Ezhov, T. V. Dolgova, A. A. Fedyanin, “Surface profile-tailored magneto-optics in magnetoplasmonic crystals”, APL Photonics 7, № 2, pp. 026104 (2022) DOI: 10.1063/5.0072698 IF=5.6, Q1, WOS, Scopus, RSCI 14. A. Yu. Frolov, J. Van de Vondel, V. I Panov, P. Van Dorpe, A. A. Fedyanin, V. V. Moshchalkov, N. Verellen, "Probing higher order optical modes in all-dielectric nanodisk, -square, and -triangle by aperture type scanning near-field optical microscopy", Nanophotonics 11, №3, pp. 543-557 (2022) DOI: 10.1515/nanoph-2021-0612 IF=7.3, Q1, WOS, Scopus, RSCI 15. A. Yu. Frolov, N. Verellen, V. V. Moshchalkov, A. A. Fedyanin, “Subwavelength probing of surface plasmons in magnetoplasmonic crystals” Journal of Physics: Conference Series 2015, c. 012041 (2021) DOI: 10.1088/1742-6596/2015/1/012041 IF=0.6, Scopus, RSCI 16. I. A. Novikov, M. A. Kiryanov, P. K. Nurgalieva, A. Yu. Frolov, V. V. Popov, T. V. Dolgova, A. A. Fedyanin, “ Ultrafast Magneto-Optics in Nickel Magnetoplasmonic Crystals”, Nano Letters 20, № 12, pp. 8615–8619 (2020) DOI: 10.1021/acs.nanolett.0c03305 IF=9.195, Q1, WOS, Scopus, RSCI 17. В.К. Беляев, В.В. Родионова, А.Ю. Фролов, А.А. Грунин, А.А. Федянин RU 2 725 650 C1, “Датчик постоянного магнитного поля на основе магнитоплазмонного кристалла” (2020) V.K. Belyaev, V.V. Rodionova, A.Yu. Frolov, A.A. Grunin, A.A. Fedyanin, RU 2 725 650 C1, Patent “Constant magnetic field sensor based on a magnetoplasmon crystal” (2020) RSCI https://viewer.rusneb.ru/ru/000224_000128_0002725650_20200703_C1_RU?page=1&rotate=0&theme=white 18. A. Yu. Frolov, M. R. Shcherbakov, A. A. Fedyanin, “Dark mode enhancing magneto-optical Kerr effect in multilayer magnetoplasmonic crystals”, Physical Review B 101, 045409, pp. 1–7 (2020) DOI: 10.1103/PhysRevB.101.045409 IF=3.443, Q1, WOS, Scopus, RSCI 19. I. A. Novikov, P. K. Nurgalieva, M. A. Kiryanov, A. Yu. Frolov, V.V. Popov, T. V. Dolgova, A.A. Fedyanin "Ultrafast magnetoplasmonics of profile-tailored all-nickel nanogratings (Conference Presentation)", Proc. SPIE 11358 2020, 113581D (2020) DOI: https://doi.org/10.1117/12.2555246 IF=0.25, WOS, Scopus, RSCI 20. A. Yu. Frolov, N. Verellen, J. Li, X. Zheng, H. Paddubrouskaya, D. Denkova, M. R. Shcherbakov, G. A.E. Vandenbosch, V. I. Panov, P. Van Dorpe, A.A. Fedyanin, V.V. Moshchalkov, “Near-Field Mapping of Optical Fabry−Perot Modes in All-Dielectric Nanoantennas” Nano Letters 17, pp. 7629-7637 (2017) DOI: 10.1021/acs.nanolett.7b03624 IF=9.195, Q1, WOS, Scopus, RSCI 21. A.V. Chetvertukhin, M.R. Shcherbakov, P.P. Vabishchevich, A.Yu. Frolov, T.V. Dolgova, M. Inoue, A.A Fedyanin, “Femtosecond control of magneto-optical effects in magnetoplasmonic crystals”, Proceedings of SPIE - The International Society for Optical Engineering, vol. 9547, pp. 95471A (2015) DOI: 10.1117/12.2192502 IF=0.25, WOS, Scopus, RSCI 22. M.R. Shcherbakov, P.P. Vabishchevich, A.Yu. Frolov, T.V. Dolgova, A.A. Fedyanin, “Femtosecond intrapulse evolution of the magneto-optic Kerr effect in magnetoplasmonic crystals”, Physical Review B, vol. 90, pp. 201405(R) 2014 DOI: 10.1103/PhysRevB.90.201405 IF=3.443, Q1, WOS, Scopus, RSCI 23. P.P. Vabishchevich, A.Yu. Frolov, M.R. Shcherbakov, A.A. Grunin, T.V. Dolgova, A.A. Fedyanin, “Magnetic field-controlled femtosecond pulse shaping by magnetoplasmonic crystals”, Journal of Applied Physics, vol. 113, pp. 17A947 (2013) DOI: 10.1063/1.4801640 IF=2.769, Q2, WOS, Scopus, RSCI
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