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Bezus Evgeniy Anatolevich
Samara State Aerospace University > Staff > Bezus Evgeniy Anatolevich

Bezus Evgeniy Anatolevich

Docent in Department of technical cybernetics

Awards

- Russian Federation Presidential Fellowship for Young Scientists and Postgraduate Students (2013-2015, 2016-2018).
- Samara region 'Young scientist' fellowship for academic excellence (2015, 2011).
- Dynasty Foundation grant for postgraduate students specializing in theoretical physics (2012-2013).
- Deutscher Akademischer Austausch Dienst (DAAD) research fellowship (2011).
- Russian Federation Presidential Fellowship for Postgraduate Students (2010-2011).

Other occupations

Research fellow, Laboratory of Diffractive Optics, Image Processing Systems Institute of the Russian Academy of Sciences

Research interests

Diffractive optics, nanophotonics, plasmonics, high-performance parallel computing in nanophotonic simulations

Research results

New nanophotonic structures for steering the propagation (focusing, reflection, generation interference patterns) of surface electromagnetic waves (surface plasmon polaritons and Bloch surface waves) were proposed and theoretically studied. Structures for generation of tunable high-frequency interference patterns of surface plasmon polaritons were developed and experimentally demonstrated.

Research and teaching activities

Courses taught: "Programming languages and methods" (lectures and practical lessons for undergraduate students majoring in Applied Mathematics and Computer Science and Applied Mathematics and Physics), "Probability theory and mathematical statistics" (practical lessons for undergraduate students majoring in Applied Mathematics and Computer Science).

Other

Google Scholar page: http://scholar.google.ru/citations?user=Cu_RqowAAAAJ&hl=ru

Publications

1. Kuz'michev A.N., Kreilkamp L.E., Nur-E-Alam M. and others. Tunable optical nanocavity of iron-garnet with a buried metal layer // Materials. 2015. Vol. 8, iss. 6. P. 3012-3023
2. Bezus E.A., Bykov D.A., Doskolovich L.L. Antireflection layers in low-scattering plasmonic optics // Photonics and Nanostructures - Fundamentals and Applications. 2015. Vol. 14. P. 101-105
3. Doskolovich L.L., Bezus E.A., Bykov D.A. Phase-shifted Bragg gratings for Bloch surface waves // Optics Express. 2015. Vol. 23, Issue 21. P. 27034-27045
4. L.L. Doskolovich, M.A. Moiseev, E.A. Bezus On the use of the supporting quadric method in the problem of the light field eikonal calculation // Optics Express. 2015. Vol. 23., Iss. 15. . P. 19605-19617
5. Osipov V., Doskolovich L.L., Bezus E.A. and others. Application of nanoimprinting technique for fabrication of trifocal diffractive lens with sine-like radial profile // Journal of Biomedical Optics. 2015. V. 20, iss. 2. P. 25008
6. Bezus E.A., Doskolovich L.L. Refraction and phase modulation of surface electromagnetic waves propagating at the boundary of a one-dimensional photonic crystal // Optics and Spectroscopy. 2015. Vol. 119, No. 5. P. 784-788
7. Golovastikov N. V., Bykov D. A., Doskolovich L. L., Bezus E. A. Spatial optical integrator based on phase-shifted Bragg gratings // Optics Communications. 2015. V.338, No.1. P. 457-460
8. Bezus E.A., Doskolovich L.L., Soifer V.A. Near-wavelength diffraction gratings for surface plasmon polaritons // Optics Letters. 2015. Vol. 40. P. 4935-4938
9. Bezus E.A., Doskolovich L.L., Kazanskiy N.L. Low-scattering surface plasmon refraction with isotropic materials // Opt. Express. 2014. - Vol.22. - ?11.. P. 13547-13554
10. Bezus E. A., Doskolovich L. L. Phase Modulation and Refraction of Bloch Surface Waves: A Rigorous Theoretical Analysis // Progress In Electromagnetics Research Symposium, August 25-28, 2014, Guangzhou, China, , 2014, P. 873-873
11. Bykov D.A., Doskolovich L.L., Bezus E.A., Soifer V.A. Optical computation of the Laplace operator using phase-shifted Bragg grating // Optics Express. 2014. - Vol.22. - ?21.. P. 25084-25092
12. Bezus E.A., Doskolovich L.L., Bykov D.A., Soifer V.A. Phase modulation of Bloch surface waves with the use of a diffraction microrelief at the boundary of a one-dimensional photonic crystal // JETP Letters. 2014. - Vol.99. - ?2.. P. 63-66
13. Doskolovich L. L., Bykov D. A., Bezus E. A., Soifer V.A. Spatial differentiation of optical beams using phase-shifted Bragg grating // Opt. Lett. . 2014. Vol. 39.. P. 1278-1281
14. Bezus E. A., Morozov A. A., Volodkin B.O. and others. Formation of high-frequency two-dimensional interference patterns of surface plasmon polaritons // JETP Lett. . 2013. - Vol.98. - ?6.. P. 317-320
15. Aslanov E.R., Doskolovich L. L., Moiseev M.A. and others. Design of an optical element forming an axial line segment for efficient LED lighting systems // Optics Express. 2013. - Vol.21. - ?23.. P. 28651-28656
16. Bezus E.A., Doskolovich L.L. Refraction and Reflection of Surface Plasmon Polaritons with Parasitic Scattering Suppression // Progress In Electromagnetics Research Symposium, 12-15 августа 2013 г., Stockholm, , 2013, P.
17. Bezus E.A., Morozov A.A., Volodkin B.O. and others. Generating High-Frequency 2D Surface PlasmonInterference Patterns Using Metal Slit Arrays. // International conference ICONO/LAT., 18-22 июня 2013г., Москва, , 2013, P. 8-9
18. Moiseev M. A., Doskolovich L.L., Dmitriev A.Yu., Bezus E.A. Analytical design of freeform optical ele-ments generating an arbitrary-shape curve // App. Opt.. 2013. 52(12). P. 2521-2526
19. Bezus E.A., Doskolovich L.L. Large-period low-scattering dielectric Bragg gratings for surface plasmon polaritons // The 12th International Conference on Near-Field Optics, Nanophotonics and Related Techniques, 3-7 September 2012, Donostia-San Sebastian, Spain, , 2012, P. 180-180
20. Doskolovich L.L., Bezus E.A., Osipov V. and others. Fabrication of three-focal diffractive lenses by two-photon polymerization technique // Applied Physics A: Materials Science & Processing . 2012. - Vol.107. - ?3.. P. 525-529
21. Kazanskiy N.L., Bezus E.A., Doskolovich L.L. Design of low-scattering dielectric diffractive lenses for focusing surface plasmon polaritons // Sino-Russia Bilateral Scientific Seminar on Diffractive Optics and Nano-Photonics' 2012, October 14-16, 2012, Shanghai, China, , 2012, P. 226-232
22. Bezus E.A., Doskolovich L.L. Stable algorithm for the computation of the electromagnetic field distribution of eigenmodes of periodic diffraction structures // J. Opt. Soc. Am. A.. 2012. 29(11). P. 2307-2313
23. Bezus E.A., Doskolovich L.L., Kazanskiy N.L. Insulator-insulator-metal plasmonic waveguide for parasitic scattering suppression in plasmonic optics // Bulletin of the Russian Academy of Sciences:. 2011. Physics 75(12), 201. P. 1573-1575
24. Bezus E.A., Doskolovich L.L. Long-period dielectric Bragg reflectors for surface plasmon polaritons // Международная конференция и семинары Т.1. 'Оп-тика-2011' Т.2. 'Терагерцовая оптика и спектроскопия', 'Оптические метаматериалы, фотонные кристаллы и наноструктуры' Т.3. Школа по метаматериалам и наноструктурам., 17-21 октября 2011 г., г. Санкт-Петербург. НИУ ИТМО., , 2011, P. 612-614
25. Bezus E.A., Doskolovich L.L., Kazanskiy N.L., Soyfer V.A. Scattering in Elements of Plasmon Optics Suppressed by Two-Layer Dielectric Structures // Technical Physics Letters.. 2011. 37(12) 2011.. P. 1091-1095
26. Bezus E.A., Doskolovich L.L., Kazanskiy N.L. Waveguides with Nanostructured Claddings for Scattering Suppression in Plasmonic Optics // Progress In Electromagnetics Research Symposium Abstracts., September 12, Suzhou, China, , 2011, P. 672
27. Bezus E.A., Doskolovich L.L., Kazanskiy N.L. Scattering suppression in plasmonic optics using a simple two-layer dielectric structure // Applied Physics Letters, 3 June 2011.. 2011. Vol. 98, ? 22, 2211. P.
28. Bezus E.A., Doskolovich L.L., Kazanskiy N.L. Evanescent-wave interferometric nanoscale photolithography using guided-mode resonant gratings // Microelectronic EngineeringVolume 88. 2011. Issue 2, February 20. P. 170-174
29. Bezus E.A., Doskolovich L.L., Kazanskiy N.L. Design of Diffractive Optical Elements for Focusing Surface Plasmon Polaritons // , , , , 2010, P. 1
30. Soyfer V.A., Kazanskiy N.L., Doskolovich L.L., Bezus E.A. Designing diffraction optical elements for the focusing of plasmon modes // J. Opt. Technol.. 2010. v. 77. P. 459-460