Боровкова Ольга Владимировна

Материал из Кафедра физики колебаний
Перейти к навигации Перейти к поиску
Боровкова Ольга Владимировна

Ассистент, кандидат физико-математических наук


Контактные данные

e-mail: borovkova@physics.msu.ru
Комната на факультете: 1-63
Телефон рабочий: 939-12-24

Научные интересы

Фотоника, нелинейная оптика, теория оптических солитонов, оптические микрорезонаторы, плазмоника, магнитооптика

Педагогическая деятельность

  1. Спецкурс «Оптические явления в нелинейных средах и микрорезонаторах»
  2. Практикум кафедры физики колебаний

Основные публикации

  1. O.V. Borovkova, V.E. Lobanov, Y.V. Kartashov, V.A. Vysloukh, L. Torner, «Dynamic versus Anderson localization». Phys. Rev. A, V. 91, P. 063825 (2015). (https://doi.org/10.1103/PhysRevA.91.063825)
  2. V.E. Lobanov, O.V. Borovkova, V.A. Vysloukh, «Anderson localization of multichannel excitations in disordered two-dimensional waveguide arrays». EPL, V. 109, P. 54001 (2015). (https://doi.org/10.1209/0295-5075/109/54001)
  3. V.E. Lobanov, O.V. Borovkova, Y.V. Kartashov, A. Szameit, «Spatio-temporal hybrid Anderson localization». EPL, V. 108, P. 64002 (2014). (https://doi.org/10.1209/0295-5075/108/64002)
  4. V.E. Lobanov, O.V. Borovkova, B.A. Malomed, «Dissipative quadratic solitons supported by localized gain». Phys. Rev. A, V. 90, P. 053820 (2014). (https://doi.org/10.1103/PhysRevA.90.053820)
  5. V.E. Lobanov, O.V. Borovkova, Y.V. Kartashov, B.A. Malomed, L. Torner «Stable bright and vortex solitons in photonic crystal fibers with inhomogeneous defocusing nonlinearity». Opt. Lett., V. 37, P. 1799-1801 (2012).
  6. O.V. Borovkova, V.E. Lobanov, B.A. Malomed «Solitons supported by singular spatial modulation of the Kerr nonlinearity». Phys. Rev. A, V. 85, P. 023845 (2012).
  7. O.V. Borovkova, V.E. Lobanov, B.A. Malomed «Stable nonlinear amplification of solitons without gain saturation». EPL, V. 97, P. 44003 (2012).
  8. O.V. Borovkova, V.E. Lobanov, Y.V. Kartashov, L. Torner «Stable vortex-soliton tori with multiple nested phase singularities in dissipative media». Phys. Rev. A, V. 85, P. 023814 (2012).
  9. V.E. Lobanov, O.V. Borovkova, Y.V. Kartashov, V.A. Vysloukh, L. Torner «Topological light bullets supported by spatiotemporal gain». Phys. Rev. A, V. 85, P. 023804 (2012).
  10. O.V. Borovkova, Y.V. Kartashov, V.A. Vysloukh, V.E. Lobanov, B.A. Malomed, L. Torner «Solitons supported by spatially inhomogeneous nonlinear losses». Opt. Express, V. 20, P. 2657-2667 (2012).
  11. O.V. Borovkova, Y.V. Kartashov, V.E. Lobanov, V.A. Vysloukh, L. Torner «Vortex twins and anti-twins supported by multiring gain landscapes». Opt. Lett., V. 36, P. 3783-3785 (2011).
  12. O.V. Borovkova, Y.V. Kartashov, L. Torner, B.A. Malomed «Bright solitons from defocusing nonlinearities». Phys. Rev. E, V. 84, P. 035602 (2011). (10.1103/PhysRevE.84.035602)
  13. O.V. Borovkova, Y.V. Kartashov, B.A. Malomed, L. Torner «Algebraic bright and vortex solitons in defocusing media». Opt. Lett., V. 36, P. 3088-3090 (2011). (10.1364/OL.36.003088)
  14. O.V. Borovkova, Y.V. Kartashov, V.E. Lobanov, V.A. Vysloukh, L. Torner «General quasi-nonspreading linear three-dimensional wave packets». Opt. Lett., V. 36, P. 2176-2178 (2011).
  15. O.V. Borovkova, V.E. Lobanov, Y.V. Kartashov, L. Torner «Rotating vortex solitons supported by localized gain». Opt. Lett., V. 36, P. 1936-1938 (2011).
  16. O.V. Borovkova, B.A. Malomed, Y.V. Kartashov, «Two-dimensional vector solitons stabilized by a linear or nonlinear lattice acting in one component». EPL, V. 92, P. 64001 (2010).
  17. O.V. Borovkova, Y.V. Kartashov, L. Torner, «Stabilization of two-dimensional solitons in cubic-saturable nonlinear lattices». Phys. Rev. A, V. 81, P. 063806 (2010).
  18. O.V. Borovkova, D.O. Ignatyeva, V.I. Belotelov, “Layer-Selective Magnetization Switching in the Chirped Photonic Crystal with GdFeCo”, Scientific Reports, 11, p. 2239 (2021). Doi: https://doi.org/10.1038/s41598-021-81887-0
  19. O.V. Borovkova, H. Hashim, D.O. Ignatyeva, M.A. Kozhaev, A.N. Kalish, S.A. Dagesyan, A.N. Shaposhnikov, V.N. Berzhansky, V.G. Achanta, L.V. Panina, A.K. Zvezdin, V.I. Belotelov, “Magnetoplasmonic structures with broken spatial symmetry”, Phys. Rev. B Rapid Communications, V. 102, p. 081405(R) (2020). Doi: 10.1103/PhysRevB.102.081405.
  20. O.V. Borovkova, D.O. Ignatyeva, S.K. Sekatskii, A. Karabchevsky, and V.I. Belotelov, “High-Q surface electromagnetic wave resonance excitation in magneto-photonic crystals for super-sensitive detection of weak light absorption in near-IR”, Photonics Research, V. 8 (1), pp. 57-64 (2020).
  21. M. Levy, O.V. Borovkova, C. Sheidler, B.Blasiola, D. Karki, F. Jomard, M.A. Kozhaev, E. Popova, N. Keller, and V.I. Belotelov, “Faraday rotation in iron garnet films beyond elemental substitutions”, Optica, V. 6(5), pp. 642-646 (2019).
  22. O.V. Borovkova, F. Spitzer, V.I. Belotelov, I.A. Akimov, A.N. Poddubny, G. Karczewski, M. Wiater, T. Wojtowicz, A.K. Zvezdin, D.R. Yakovlev, M. Bayer, “Transverse Magneto-Optical Kerr Effect at Narrow Optical Resonances”, Nanophotonics, V. 8(2), pp. 287-296 (2019).
  23. O.V. Borovkova, H. Hashim, M.A. Kozhaev, S.A. Dagesyan, A. Chakravarty, M. Levy, and V.I. Belotelov, “TMOKE as efficient tool for the magneto-optic analysis of ultra-thin magnetic films”, Appl. Phys. Lett., V. 112, P. 063101 (2018).
  24. O. Borovkova, A. Kalish, V. Belotelov, «Transverse Magneto-Optical Kerr Effect in Active Magneto-Plasmonic Structures». Opt. Lett., V. 41, P. 4593-4596 (2016). (https://doi.org/10.1364/OL.41.004593)