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Publications in Math-Net.Ru |
Citations |
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2019 |
1. |
V. V. Podlipnov, S. V. Karpeev, V. D. Paranin, “Fully symmetric diffraction-interference beam shaper for radially polarized light on a 1530-nm wavelength”, Computer Optics, 43:4 (2019), 577–585 |
2. |
S. V. Karpeev, V. V. Podlipnov, N. A. Ivliev, V. D. Paranin, “Transmission and detection of informationally loaded beams of wavelength 1530 nm in a random fluctuating medium”, Computer Optics, 43:3 (2019), 368–375 |
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2018 |
3. |
S. V. Karpeev, V. V. Podlipnov, S. N. Khonina, V. D. Paranin, À. Ñ. Ðåøåòíèêîâ, “A four-sector polarization converter integrated in a calcite crystal”, Computer Optics, 42:3 (2018), 401–407 |
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4. |
S. V. Karpeev, V. D. Paranin, S. N. Khonina, “Generation of nonuniformly polarised vortex Bessel beams by an interference polariser”, Kvantovaya Elektronika, 48:6 (2018), 521–526 [Quantum Electron., 48:6 (2018), 521–526 ] |
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2017 |
5. |
V. D. Paranin, S. V. Karpeev, O. G. Babaev, “Experimental investigation of birefringence of a parabolic gradient-index lens on the basis of astigmatic transformation of a Bessel beam”, Computer Optics, 41:6 (2017), 837–841 |
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6. |
S. V. Karpeev, V. D. Paranin, M. S. Kirilenko, “Comparison of the stability of Laguerrå-Gauss vortex beams to random fluctuations of the optical environment”, Computer Optics, 41:2 (2017), 208–217 |
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2016 |
7. |
V. D. Paranin, S. V. Karpeev, K. N. Tukmakov, B. O. Volodkin, “Tunable diffraction grating with transparent indium-tin oxide electrodes on a lithium niobate X-cut crystal”, Computer Optics, 40:5 (2016), 685–688 |
8. |
V. D. Paranin, “Measuring the thickness of Z-cut uniaxial crystals based on Bessel laser beams”, Computer Optics, 40:4 (2016), 594–599 |
9. |
S. N. Khonina, V. D. Paranin, “Electro-optical correction of Bessel beam conversion along the axis of a barium niobate-strontium crystal”, Computer Optics, 40:4 (2016), 475–481 |
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10. |
V. D. Paranin, S. V. Karpeev, “Method of measurement of thickness of uniaxial anisotropic crystals and thermal control of Bessel beam transformation”, Computer Optics, 40:1 (2016), 36–44 |
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11. |
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 |
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12. |
V. D. Paranin, E. Pantelei, “Determining the sign of a polar surface of lithium niobate crystal by UV reflectance spectroscopy”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:24 (2016), 58–63 ; Tech. Phys. Lett., 43:1 (2017), 35–37 |
13. |
V. D. Paranin, “Determination of the optical axis in $Z$-cut uniaxial crystals by a polarization-based method”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:11 (2016), 10–18 ; Tech. Phys. Lett., 42:6 (2016), 559–562 |
14. |
V. D. Paranin, S. V. Karpeev, S. N. Khonina, “Control of the formation of vortex Bessel beams in uniaxial crystals by varying the beam divergence”, Kvantovaya Elektronika, 46:2 (2016), 163–168 [Quantum Electron., 46:2 (2016), 163–168 ] |
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2015 |
15. |
V. D. Paranin, S. V. Karpeev, A. P. Krasnov, “A converter of circularly polarized laser beams into cylindrical vector beams based on anisotropic crystals”, Computer Optics, 39:5 (2015), 644–653 |
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16. |
V. D. Paranin, S. V. Karpeev, S. N. Khonina, “Generation of radially polarized beams based on the refractive optical elements with interference polarizing coatings”, Computer Optics, 39:4 (2015), 492–499 |
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2014 |
17. |
S. N. Khonina, V. D. Paranin, S. V. Karpeev, A. A. Morozov, “Study of polarization transformations and interaction of ordinary and extraordinary beams in nonparaxial regime”, Computer Optics, 38:4 (2014), 598–605 |
18. |
V. D. Paranin, K. N. Tukmakov, “Method for studying the phase function in tunable diffraction optical elements”, Kvantovaya Elektronika, 44:4 (2014), 371–375 [Quantum Electron., 44:4 (2014), 371–375 ] |
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2013 |
19. |
V. D. Paranin, S. A. Matyunin, K. N. Tukmakov, “Semiconductor laser with a birefringent external cavity for information systems with wavelength division multiplexing”, Kvantovaya Elektronika, 43:10 (2013), 920–922 [Quantum Electron., 43:10 (2013), 920–922 ] |
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