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Publications in Math-Net.Ru |
Citations |
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2023 |
1. |
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 |
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2021 |
2. |
V. S. Pavel'ev, K. N. Tukmakov, А. С. Решетников, V. V. Gerasimov, N. D. Osintseva, B. A. Knyazev, “Experimental investigation of the self-healing of terahertz Bessel beams with orbital angular momentum”, Computer Optics, 45:5 (2021), 673–677 |
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2019 |
3. |
V. S. Pavel'ev, Yu. Yu. Choporova, N. D. Osintseva, K. N. Tukmakov, B. A. Knyazev, “Control of transverse mode content and polarization structure of terahertz coherent beams”, Computer Optics, 43:6 (2019), 1103–1108 |
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4. |
S. N. Khonina, K. N. Tukmakov, S. A. Degtyarev, А. С. Решетников, V. S. Pavel'ev, B. A. Knyazev, Yu. Yu. Choporova, “Design, fabrication and investigation of a silicon subwavelength terahertz axicon”, Computer Optics, 43:5 (2019), 756–764 |
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2018 |
5. |
K. N. Tukmakov, M. S. Komlenok, V. S. Pavel'ev, T. V. Kononenko, V. I. Konov, “A continuous-profile diffractive focuser for terahertz radiation fabricated by laser ablation of silicon”, Computer Optics, 42:6 (2018), 941–946 |
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2016 |
6. |
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 |
7. |
P. Verma, V. S. Pavel'ev, B. O. Volodkin, K. N. Tukmakov, A. S. Reshetnikov, T. V. Andreeva, С. А. Фомченков, S. N. Khonina, “Design, simulation, and fabrication of silicon-on-insulator MEMS vibratory decoupled gyroscope”, Computer Optics, 40:5 (2016), 668–673 |
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2015 |
8. |
A. N. Agaphonov, B. O. Volodkin, A. K. Kaveev, D. G. Kachalov, B. A. Knyazev, G. I. Kropotov, K. N. Tukmakov, V. S. Pavel'ev, D. I. Tsypishka, Yu. Yu. Choporova, “Binary DOE with elongated focal depth to focus terahertz free electron laser radiation (NovoFEL)”, Computer Optics, 39:1 (2015), 58–63 |
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9. |
M. S. Komlenok, B. O. Volodkin, B. A. Knyazev, V. V. Kononenko, T. V. Kononenko, V. I. Konov, V. S. Pavelyev, V. A. Soifer, K. N. Tukmakov, Yu. Yu. Choporova, “Fabrication of a multilevel THz Fresnel lens by femtosecond laser ablation”, Kvantovaya Elektronika, 45:10 (2015), 933–936 [Quantum Electron., 45:10 (2015), 933–936 ] |
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2014 |
10. |
A. N. Agaphonov, B. O. Volodkin, A. K. Kaveev, B. A. Knyazev, G. I. Kropotov, V. S. Pavel'ev, K. N. Tukmakov, Yu. Yu. Choporova, “Control of transverse modal spectrum of terahertz laser irradiation by binary silicon optical elements”, Computer Optics, 38:4 (2014), 763–769 |
11. |
S. V. Alferov, S. V. Karpeev, S. N. Khonina, K. N. Tukmakov, O. Yu. Moiseev, S. A. Shulyapov, K. A. Ivanov, A. B. Savel'ev-Trofimov, “On the possibility of controlling laser ablation by tightly focused femtosecond radiation”, Kvantovaya Elektronika, 44:11 (2014), 1061–1065 [Quantum Electron., 44:11 (2014), 1061–1065 ] |
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12. |
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 |
13. |
A. N. Agafonov, B. O. Volodkin, S. G. Volotovsky, A. K. Kaveev, B. A. Knyazev, G. I. Kropotov, K. N. Tukmakov, V. S. Pavelyev, E. V. Tsygankova, D. I. Tsypishka, Yu. Yu. Choporova, “Silicon optics for focusing of terahertz laser radiation in a given two-dimensional domain”, Computer Optics, 37:4 (2013), 464–4700 |
14. |
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 |
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15. |
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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