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Publications in Math-Net.Ru |
Citations |
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2023 |
1. |
A. I. Kashapov, L. L. Doskolovich, E. A. Bezus, N. V. Golovastikov, D. A. Bykov, “Second-order optical differentiation of a 3D light beam at oblique incidence using a multilayer metal-dielectric structure”, Computer Optics, 47:6 (2023), 845–855 |
2. |
D. A. Bykov, E. A. Bezus, L. L. Doskolovich, “Coupled-mode theory for resonant gratings with a varying period”, Computer Optics, 47:3 (2023), 341–349 |
2
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2022 |
3. |
L. L. Doskolovich, A. A. Mingazov, E. V. Byzov, D. A. Bykov, E. A. Bezus, “Method for calculating the eikonal function and its application to design of diffractive optical elements for optical beam shaping”, Computer Optics, 46:2 (2022), 173–183 |
6
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2021 |
4. |
L. L. Doskolovich, D. A. Bykov, A. A. Mingazov, E. A. Bezus, “Method for calculating a refractive optical element forming given illuminance distribution and wavefront”, Computer Optics, 45:6 (2021), 818–827 |
2
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5. |
A. I. Kashapov, L. L. Doskolovich, D. A. Bykov, E. A. Bezus, D. Nesterenko, “Optical differentiator based on a trilayer metal-dielectric structure”, Computer Optics, 45:3 (2021), 356–363 |
3
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2019 |
6. |
L. L. Doskolovich, E. A. Bezus, D. A. Bykov, R. V. Skidanov, N. L. Kazanskiy, “Calculation of a diffractive lens having a fixed focal position at several prescribed wavelengths”, Computer Optics, 43:6 (2019), 946–955 |
15
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7. |
L. L. Doskolovich, A. A. Mingazov, D. A. Bykov, E. A. Bezus, “Formulation of the inverse problem of calculating the optical surface for an illuminating beam with a plane wavefront as the Monge–Kantorovich problem”, Computer Optics, 43:5 (2019), 705–713 |
7
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2018 |
8. |
E. A. Kadomina, E. A. Bezus, L. L. Doskolovich, “Bragg gratings with parasitic scattering suppression for surface plasmon polaritons”, Computer Optics, 42:5 (2018), 800–806 |
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9. |
L. L. Doskolovich, E. A. Bezus, N. L. Kazanskii, “Multifocal spectral diffractive lens”, Computer Optics, 42:2 (2018), 219–226 |
10
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10. |
E. A. Bezus, D. A. Bykov, L. L. Doskolovich, “On the relation between the propagation constant of Bloch surface waves and the thickness of the upper layer of a photonic crystal”, Computer Optics, 42:1 (2018), 22–27 |
8
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2017 |
11. |
E. A. Kadomina, E. A. Bezus, L. L. Doskolovich, “Generation of high-frequency interference patterns of evanescent electromagnetic waves at Fabry-Perot resonances in dielectric photonic crystals”, Computer Optics, 41:3 (2017), 322–329 |
3
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2016 |
12. |
E. A. Kadomina, E. A. Bezus, L. L. Doskolovich, “Resonant photonic-crystal structures with a diffraction grating for refractive index sensing”, Computer Optics, 40:2 (2016), 164–172 |
10
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13. |
E. A. Kadomina, E. A. Bezus, L. L. Doskolovich, “Generation of 1D interference patterns of Bloch surface waves”, Zhurnal Tekhnicheskoi Fiziki, 86:9 (2016), 107–112 ; Tech. Phys., 61:9 (2016), 1389–1394 |
1
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2015 |
14. |
E. A. Kadomina, E. A. Bezus, L. L. Doskolovich, “Spectrally selective near-field enhancement in a photonic crystal structure with a diffraction grating”, Computer Optics, 39:4 (2015), 462–468 |
3
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2014 |
15. |
L. L. Doskolovich, E. A. Bezus, D. A. Bykov, “On the compensation of the diffraction orders overlap effect in the Offner spectrometer”, Computer Optics, 38:4 (2014), 777–781 |
16. |
E. A. Bezus, L. L. Doskolovich, “Phase modulation and refraction of surface plasmon polaritons with parasitic scattering suppression”, Computer Optics, 38:4 (2014), 623–528 |
17. |
E. A. Bezus, L. L. Doskolovich, D. A. Bykov, V. A. Soifer, “Phase modulation of Bloch surface waves with the use of a diffraction microrelief at the boundary of a one-dimensional photonic crystal”, Pis'ma v Zh. Èksper. Teoret. Fiz., 99:2 (2014), 67–71 ; JETP Letters, 99:2 (2014), 63–66 |
22
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2013 |
18. |
E. A. Bezus, A. A. Morozov, B. O. Volodkin, S. V. Alferov, L. L. Doskolovich, K. N. Tukmakov, “Formation of high-frequency two-dimensional interference patterns of surface plasmon polaritons”, Pis'ma v Zh. Èksper. Teoret. Fiz., 98:6 (2013), 357–360 ; JETP Letters, 98:6 (2013), 317–320 |
4
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2011 |
19. |
E. A. Bezus, L. L. Doskolovich, N. L. Kazanskii, “Interference pattern generation in evanescent electromagnetic waves for nanoscale lithography using waveguide diffraction gratings”, Kvantovaya Elektronika, 41:8 (2011), 759–764 [Quantum Electron., 41:8 (2011), 759–764 ] |
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