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Publications in Math-Net.Ru |
Citations |
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2023 |
| 1. |
N. A. Firsov, V. V. Podlipnov, N. A. Ivliev, D. D. Ryskova, A. V. Pirogov, A. A. Muzyka, A. R. Makarov, V. E. Lobanov, V. I. Platonov, A. N. Babichev, V. A. Monastyrsky, V. I. Olgarenko, P. Nikolaev, R. V. Skidanov, A. V. Nikonorov, N. L. Kazanskii, V. A. Soifer, “Ensembles of spectral-spatial convolutional neural network models for classifying soil types in hyperspectral images”, Computer Optics, 47:5 (2023), 795–805 |
13
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| 2. |
S. I. Kharitonov, V. S. Pavel'ev, N. L. Kazanskii, Yu. S. Strelkov, K. N. Tukmakov, А. С. Решетников, S. V. Ganchevskaya, V. V. Gerasimov, B. A. Knyazev, “Optimization, fabrication and characterization of a binary subwavelength cylindrical terahertz lens”, Computer Optics, 47:1 (2023), 62–67 |
5
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| 3. |
E. V. Byzov, L. L. Doskolovich, S. V. Kravchenko, M. A. Moiseev, N. L. Kazanskii, “Design of optical elements for an extended light source”, Computer Optics, 47:1 (2023), 40–47 |
7
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2022 |
| 4. |
S. I. Kharitonov, N. L. Kazanskii, S. G. Volotovsky, S. N. Khonina, “Calculation of quantum characteristics based on the classical solution of the diffraction problem in a resonator with a dielectric plate”, Computer Optics, 46:5 (2022), 741–751 |
2
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| 5. |
A. A. Rastorguev, S. I. Kharitonov, N. L. Kazanskii, “Numerical simulation of the performance of a spaceborne Offner imaging hyperspectrometer in the wave optics approximation”, Computer Optics, 46:1 (2022), 56–64 |
14
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2021 |
| 6. |
V. V. Evdokimova, M. V. Petrov, M. A. Klyueva, E. Yu. Zybin, V.V. Kosianchuk, I. B. Mishchenko, V. M. Novikov, N. I. Sel'vesyuk, E. I. Ershov, N. A. Ivliev, R. V. Skidanov, N. L. Kazanskiy, A. V. Nikonorov, “Deep learning-based video stream reconstruction in mass-production diffractive optical systems”, Computer Optics, 45:1 (2021), 130–141 |
29
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2020 |
| 7. |
E. V. Byzov, L. L. Doskolovich, S. V. Kravchenko, N. L. Kazanskii, “Analytical design of refractive optical elements generating a prescribed two-dimensional intensity distribution”, Computer Optics, 44:6 (2020), 883–892 |
2
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| 8. |
E. S. Andreev, E. V. Byzov, D. A. Bykov, M. A. Moiseev, N. L. Kazanskii, L. L. Doskolovich, “Design and fabrication of a freeform mirror generating a uniform illuminance distribution in a rectangular region”, Computer Optics, 44:4 (2020), 540–546 |
9
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| 9. |
N. L. Kazanskiy, M. Butt, S. A. Degtyarev, S. N. Khonina, “Achievements in the development of plasmonic waveguide sensors for measuring the refractive index”, Computer Optics, 44:3 (2020), 295–318 |
46
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| 10. |
R. V. Skidanov, L. L. Doskolovich, S. V. Ganchevskaya, V. A. Blank, V. V. Podlipnov, N. L. Kazanskii, “Experiment with a diffractive lens with a fixed focus position at several given wavelengths”, Computer Optics, 44:1 (2020), 22–28 |
12
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| 11. |
A. A. Rastorguev, S. I. Kharitonov, N. L. Kazanskii, “Modeling of image formation with a space-borne Offner hyperspectrometer”, Computer Optics, 44:1 (2020), 12–21 |
21
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| 12. |
R. V. Skidanov, S. V. Ganchevskaya, V. S. Vasilev, N. L. Kazanskii, “Limiting the number of quantisation levels of a harmonic lens as a method for improving the quality of the generated image”, Kvantovaya Elektronika, 50:7 (2020), 675–678 [Quantum Electron., 50:7 (2020), 675–678 ] |
1
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| 13. |
N. L. Kazanskii, S. N. Khonina, S. V. Karpeev, A. P. Porfirev, “Diffractive optical elements for multiplexing structured laser beams”, Kvantovaya Elektronika, 50:7 (2020), 629–635 [Quantum Electron., 50:7 (2020), 629–635 ] |
84
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| 14. |
O. I. Baum, A. I. Omel'chenko, E. M. Kas'yanenko, R. V. Skidanov, N. L. Kazanskii, È. N. Sobol', A. V. Bolshunov, S. E. Avetisov, V. Ya. Panchenko, “Control of laser-beam spatial distribution for correcting the shape and refraction of eye cornea”, Kvantovaya Elektronika, 50:1 (2020), 87–93 [Quantum Electron., 50:1 (2020), 87–93 ] |
20
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2019 |
| 15. |
M. Butt, S. N. Khonina, N. L. Kazanskiy, “Optical elements based on silicon photonics”, Computer Optics, 43:6 (2019), 1079–1083 |
46
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| 16. |
A. A. Mingazov, L. L. Doskolovich, D. A. Bykov, N. L. Kazanskiy, “The two reflector design problem for forming a flat wavefront from a point source as an optimal mass transfer problem”, Computer Optics, 43:6 (2019), 968–975 |
5
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| 17. |
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 |
19
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2018 |
| 18. |
S. I. Kharitonov, S. G. Volotovsky, S. N. Khonina, N. L. Kazanskii, “Propagation of electromagnetic pulses and calculation of dynamic invariants in a waveguide with a convex shell”, Computer Optics, 42:6 (2018), 947–958 |
7
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| 19. |
S. A. Bibikov, N. L. Kazanskiy, V. A. Fursov, “Vegetation type recognition in hyperspectral images using a conjugacy indicator”, Computer Optics, 42:5 (2018), 846–854 |
40
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| 20. |
N. L. Kazanskiy, S. I. Kharitonov, I. N. Kozlova, M. A. Moiseev, “The connection between the phase problem in optics, focusing of radiation, and the Monge–Kantorovich problem”, Computer Optics, 42:4 (2018), 574–587 |
21
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| 21. |
A. A. Mingazov, D. A. Bykov, L. L. Doskolovich, N. L. Kazanskii, “Variational interpretation of the eikonal calculation problem from the condition of generating a prescribed irradiance distribution”, Computer Optics, 42:4 (2018), 568–573 |
6
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| 22. |
A. A. Rastorguev, S. I. Kharitonov, N. L. Kazanskii, “Modeling of arrangement tolerances for the optical elements in a spaceborne Offner imaging hyperspectrometer”, Computer Optics, 42:3 (2018), 424–431 |
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| 23. |
L. L. Doskolovich, E. A. Bezus, N. L. Kazanskii, “Multifocal spectral diffractive lens”, Computer Optics, 42:2 (2018), 219–226 |
15
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2017 |
| 24. |
N. A. Smelkina, R. N. Kosarev, A. V. Nikonorov, I. M. Bairikov, K. N. Ryabov, E. V. Avdeev, N. L. Kazanskiy, “Reconstruction of anatomical structures using statistical shape modeling”, Computer Optics, 41:6 (2017), 897–904 |
35
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| 25. |
A. V. Nikonorov, M. V. Petrov, S. A. Bibikov, V. V. Kutikova, A. A. Morozov, N. L. Kazanskiy, “Image restoration in diffractive optical systems using deep learning and deconvolution”, Computer Optics, 41:6 (2017), 875–887 |
64
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| 26. |
A. A. Rastorguev, S. I. Kharitonov, N. L. Kazanskii, “Modeling the illuminance distribution in the detection plane of a spaceborne Offner hyperspectrometer”, Computer Optics, 41:3 (2017), 399–405 |
14
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| 27. |
S. I. Kharitonov, L. L. Doskolovich, N. L. Kazanskii, “Asymptotic methods for solving problems of diffraction by non-periodic structures”, Computer Optics, 41:2 (2017), 160–168 |
| 28. |
N. L. Kazanskii, V. A. Kolpakov, S. V. Krichevskiy, V. V. Podlipnov, “Simulations of dynamic resistive evaporation in a vacuum”, Zhurnal Tekhnicheskoi Fiziki, 87:10 (2017), 1483–1488 ; Tech. Phys., 62:10 (2017), 1490–1495 |
4
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2016 |
| 29. |
V. V. Podlipnov, V. A. Kolpakov, N. L. Kazanskii, “Etching of silicon dioxide in off-electrode plasma using a chrome mask”, Computer Optics, 40:6 (2016), 830–836 |
4
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| 30. |
S. I. Kharitonov, L. L. Doskolovich, N. L. Kazanskii, “Solving the inverse problem of focusing laser radiation in a plane region using geometrical optics”, Computer Optics, 40:4 (2016), 439–450 |
25
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| 31. |
N. L. Kazanskiy, I. S. Stepanenko, A. I. Khaimovich, S. V. Kravchenko, E. V. Byzov, M. A. Moiseev, “Injectional multilens molding parameters optimization”, Computer Optics, 40:2 (2016), 203–214 |
61
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| 32. |
S. I. Kharitonov, N. L. Kazanskiy, L. L. Doskolovich, Yu. S. Strelkov, “Modeling the reflection of the electromagnetic waves at a diffraction grating generated on a curved surface”, Computer Optics, 40:2 (2016), 194–202 |
7
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| 33. |
N. L. Kazanskii, S. D. Poletayev, “Numerical simulation of the ablation of thin molybdenum films under laser irradiation”, Zhurnal Tekhnicheskoi Fiziki, 86:9 (2016), 1–6 ; Tech. Phys., 61:9 (2016), 1279–1285 |
11
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| 34. |
A. V. Volkov, N. L. Kazanskii, O. Yu. Moiseev, V. D. Paranin, S. D. Poletayev, I. V. Chistyakov, “Specific features of the laser irradiation of thin molybdenum films”, Zhurnal Tekhnicheskoi Fiziki, 86:4 (2016), 101–105 ; Tech. Phys., 61:4 (2016), 579–583 |
6
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| 35. |
P. G. Serafimovich, M. V. Stepikhova, N. L. Kazanskii, S. A. Gusev, A. V. Egorov, E. V. Skorokhodov, Z. F. Krasil'nik, “On a silicon-based photonic-crystal cavity for the near-IR region: Numerical simulation and formation technology”, Fizika i Tekhnika Poluprovodnikov, 50:8 (2016), 1133–1137 ; Semiconductors, 50:8 (2016), 1112–1116 |
7
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| 36. |
N. L. Kazanskii, O. Yu. Moiseev, S. D. Poletayev, “Microprofile formation by thermal oxidation of molybdenum films”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:3 (2016), 106–110 ; Tech. Phys. Lett., 42:2 (2016), 164–166 |
59
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2015 |
| 37. |
V. I. Protsenko, N. L. Kazanskiy, P. G. Serafimovich, “Real-time analysis of parameters of multiple object detection systems”, Computer Optics, 39:4 (2015), 582–591 |
13
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| 38. |
S. I. Kharitonov, S. G. Volotovskiy, S. N. Khonina, N. L. Kazanskiy, “A differential method for calculating X-ray diffraction by crystals: the scalar theory”, Computer Optics, 39:4 (2015), 469–479 |
3
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| 39. |
L. L. Doskolovich, M. A. Moiseev, N. L. Kazanskiy, “On using a supporting quadric method to design diffractive optical elements”, Computer Optics, 39:3 (2015), 339–346 |
2
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| 40. |
D. A. Zherdev, N. L. Kazanskiy, V. A. Fursov, “Object recognition in radar images using conjugation indices and support subspaces”, Computer Optics, 39:2 (2015), 255–264 |
9
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| 41. |
A. V. Egorov, N. L. Kazanskiy, P. G. Serafimovich, “Using coupled photonic crystal cavities for increasing of sensor sensitivity”, Computer Optics, 39:2 (2015), 158–162 |
33
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| 42. |
N. L. Kazanskiy, S. I. Kharitonov, L. L. Doskolovich, A. V. Pavelev, “Modeling the performance of a spaceborne hyperspectrometer based on the Offner scheme”, Computer Optics, 39:1 (2015), 70–76 |
40
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| 43. |
A. V. Volkov, N. L. Kazanskii, O. Yu. Moiseev, S. D. Poletayev, “Thermal oxidative degradation of molybdenum films under laser ablation”, Zhurnal Tekhnicheskoi Fiziki, 85:2 (2015), 107–111 ; Tech. Phys., 60:2 (2015), 265–269 |
17
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2014 |
| 44. |
N. L. Kazanskii, V. I. Protsenko, P. G. Serafimovich, “Comparison of system performance for streaming data analysis in image processing tasks by sliding window”, Computer Optics, 38:4 (2014), 804–810 |
| 45. |
N. L. Kazanskii, S. I. Kharitonov, S. N. Khonina, “Simulation of a hyperspectrometer based on linear spectral filters using vector Bessel beams”, Computer Optics, 38:4 (2014), 770–776 |
| 46. |
D. A. Zherdev, N. L. Kazanskii, V. A. Fursov, “Object recognition by the radar signatures of electromagnetic field scattering on base of support subspaces method”, Computer Optics, 38:3 (2014), 503–510 |
| 47. |
N. L. Kazanskii, S. N. Khonina, R. V. Skidanov, A. A. Morozov, S. I. Kharitonov, S. G. Volotovsky, “Formation of images using multilevel diffractive lens”, Computer Optics, 38:3 (2014), 425–434 |
| 48. |
E. A. Zimichev, N. L. Kazanskii, P. G. Serafimovich, “Spectral-spatial classification with k-means++ particional clustering”, Computer Optics, 38:2 (2014), 281–286 |
| 49. |
N. L. Kazanskii, S. I. Kharitonov, A. V. Karsakov, S. N. Khonina, “Modeling action of a hyperspectrometer based on the Offner scheme within geometric optics”, Computer Optics, 38:2 (2014), 271–280 |
| 50. |
N. L. Kazanskii, S. I. Kharitonov, S. N. Khonina, S. G. Volotovsky, Yu. S. Strelkov, “Simulation of hyperspectrometer on spectral linear variable filters”, Computer Optics, 38:2 (2014), 256–270 |
| 51. |
A. Yu. Dmitriev, D. L. Doskolovich, L. L. Doskolovich, N. L. Kazanskii, “Analytic design of refractive optical elements generating one-parameter directivity diagram”, Computer Optics, 38:2 (2014), 207–212 |
| 52. |
N. L. Kazanskii, P. G. Serafimovich, “Using photonic crystal nanobeam cavities for integration of optical signal”, Computer Optics, 38:2 (2014), 181–187 |
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2013 |
| 53. |
A. G. Glushchenko, E. P. Glushchenko, N. L. Kazanskii, L. V. Toporkova, “Standing waves in nonreciprocal media”, Computer Optics, 37:4 (2013), 415–418 |
| 54. |
V. S. Lyubopytov, A. Z. Tlyavlin, A. Kh. Sultanov, V. Kh. Bagmanov, S. N. Khonina, S. V. Karpeev, N. L. Kazanskiy, “Mathematical model of completely optical system for detection of mode propagation parameters in an optical fiber with few-mode operation for adaptive compensation of mode coupling”, Computer Optics, 37:3 (2013), 352–359 |
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2011 |
| 55. |
E. A. Bezus, L. L. Doskolovich, N. L. Kazanskii, V. A. Soifer, “Scattering in elements of plasmon optics suppressed by two-layer dielectric structures”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 37:23 (2011), 10–18 ; Tech. Phys. Lett., 37:12 (2011), 1091–1095 |
44
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| 56. |
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 ] |
53
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2009 |
| 57. |
N. L. Kazanskii, V. A. Kolpakov, “Effect of bulk modification of polymers in a directional low-temperature plasma flow”, Zhurnal Tekhnicheskoi Fiziki, 79:9 (2009), 41–46 ; Tech. Phys., 54:9 (2009), 1284–1289 |
14
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| 58. |
V. S. Solovjev, B. O. Volodkin, A. V. Volkov, N. L. Kazansky, “Relaxation of supramolecular structures in polydimethylsiloxane films”, Mendeleev Commun., 19:6 (2009), 342–343 |
2
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2007 |
| 59. |
D. L. Golovashkin, N. L. Kazanskiy, “Mesh domain decomposition in the finite-difference solution of Maxwell's equations”, Mat. Model., 19:2 (2007), 48–58 |
4
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2005 |
| 60. |
N. A. Ignatov, N. L. Kazanskiy, Yu. I. Kornev, S. B. Popov, “Моделирование системы управления динамометрическим стендом”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 38 (2005), 115–121 |
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2004 |
| 61. |
N. L. Kazanskiy, E. A. Rakhaev, G. A. Podlipnov, “Расчет структур полей собственных волн в Т-камере”, Matem. Mod. Kraev. Zadachi, 2 (2004), 110–112 |
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1990 |
| 62. |
N. L. Kazanskii, A. S. Semenov, “Fourth Workshop on Computer Optics, Togliatti, February 19 – 24, 1990”, Kvantovaya Elektronika, 17:12 (1990), 1644–1649 [Sov J Quantum Electron, 20:12 (1990), 1534–1539 ] |
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1988 |
| 63. |
M. A. Golub, S. V. Karpeev, N. L. Kazanskii, A. V. Mirzov, I. N. Sisakyan, V. A. Soifer, G. V. Uvarov, “Spatial phase filters matched to transverse modes”, Kvantovaya Elektronika, 15:3 (1988), 617–618 [Sov J Quantum Electron, 18:3 (1988), 392–393 ] |
30
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2017 |
| 64. |
N. L. Kazanskii, “Advances of the journal of Computer Optics”, Computer Optics, 41:1 (2017), 139–141 |
10
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