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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
S. I. Kudryashov, N. A. Smirnov, S. G. Buga, V. D. Blank, P. P. Pakhol'chuk, N. I. Busleev, N. V. Kornilov, “Гибридное фотовозбуждение сверхчистого алмаза фемтосекундными лазерными импульсами среднего ИК-диапазона”, Pis'ma v Zh. Èksper. Teoret. Fiz., 120:5 (2024), 340–345 |
2. |
N. A. Smirnov, Yu. S. Gulina, N. I. Busleev, P. P. Pakholchuk, A. V. Gorevoi, V. G. Vins, S. I. Kudryashov, “Direct multiphoton femtosecond infrared laser excitation of a diamond lattice in the two-phonon region and modification of color centers”, Pis'ma v Zh. Èksper. Teoret. Fiz., 119:6 (2024), 411–416 ; JETP Letters, 119:6 (2024), 421–426 |
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2021 |
3. |
P. A. Danilov, S. I. Kudryashov, A. E. Rupasov, N. A. Smirnov, E. A. Oleynichuk, A. S. Rivnyuk, R. A. Zakoldaev, “Formation of nanogratings on the surface of nanoporous glass irradiated by femtosecond visible laser pulses”, Pis'ma v Zh. Èksper. Teoret. Fiz., 113:10 (2021), 650–654 ; JETP Letters, 113:10 (2021), 622–625 |
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N. A. Smirnov, S. I. Kudryashov, N. N. Mel'nik, P. M. Papilova, I. A. Sherstnev, A. A. Ionin, J. Chen, “Induced stress arising in crystalline silicon under exposure to ultra-short laser pulses of different duration in air and water”, Optics and Spectroscopy, 129:10 (2021), 1331–1335 ; Optics and Spectroscopy, 130:13 (2022), 2049–2052 |
5. |
A. E. Rupasov, P. A. Danilov, A. A. Ionin, N. A. Smirnov, S. I. Kudryashov, A. A. Rudenko, A. N. Putilin, R. A. Zakoldaev, “Formation and optical properties of nanolattices on the surface of calcium fluoride generated by femtosecond laser irradiation”, Optics and Spectroscopy, 129:8 (2021), 1074–1078 ; Optics and Spectroscopy, 129:10 (2021), 1160–1164 |
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2020 |
6. |
S. I. Kudryashov, A. O. Levchenko, P. A. Danilov, N. A. Smirnov, A. E. Rupasov, R. A. Khmel'nitskii, O. E. Koval'chuk, A. A. Ionin, “Fine structure of the photoluminescence spectrum of diamond under the multiple emission of an optical phonon during the autolocalization of photoexcited electrons”, Pis'ma v Zh. Èksper. Teoret. Fiz., 112:9 (2020), 579–583 ; JETP Letters, 112:9 (2020), 533–536 |
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7. |
A. A. Nastulyavichus, S. I. Kudryashov, N. A. Smirnov, R. A. Khmelnitskii, A. A. Rudenko, N. N. Mel'nik, D. A. Kirilenko, P. N. Brunkov, A. A. Ionin, “Laser formation of colloidal sulfur- and carbon-doped silicon nanoparticles”, Optics and Spectroscopy, 128:7 (2020), 897–901 ; Optics and Spectroscopy, 128:7 (2020), 885–896 |
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2019 |
8. |
S. I. Kudryashov, A. A. Samokhvalov, S. N. Shelygina, N. I. Busleev, A. K. Ivanova, N. A. Smirnov, S. G. Bezhanov, S. A. Uryupin, A. A. Ionin, V. P. Veiko, “Ultrafast broadband diagnostics of the filling of the $s$ band at the two-photon femtosecond laser excitation of a gold film”, Pis'ma v Zh. Èksper. Teoret. Fiz., 110:4 (2019), 230–234 ; JETP Letters, 110:4 (2019), 250–253 |
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9. |
S. I. Kudryashov, N. A. Smirnov, B. Gakovic, D. Milovanovic, S. G. Bezhanov, S. A. Uryupin, A. A. Ionin, “Dependence of the two-photon absorption coefficient of steel on the pulse duration during its ablation by femto- and picosecond laser pulses”, Pis'ma v Zh. Èksper. Teoret. Fiz., 110:2 (2019), 90–94 ; JETP Letters, 110:2 (2019), 107–110 |
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10. |
S. I. Kudryashov, P. A. Danilov, S. G. Bezhanov, A. A. Rudenko, A. A. Ionin, S. A. Uryupin, S. F. Umanskaya, N. A. Smirnov, “Plasmon-enhanced two-photon absorption of infrared femtosecond laser pulses in thin gold films”, Pis'ma v Zh. Èksper. Teoret. Fiz., 109:6 (2019), 387–391 ; JETP Letters, 109:6 (2019), 382–386 |
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2018 |
11. |
N. A. Smirnov, S. I. Kudryashov, P. A. Danilov, A. A. Rudenko, A. A. Ionin, A. A. Nastulyavichus, “Silicon ablation by single ultrashort laser pulses of variable width in air and water”, Pis'ma v Zh. Èksper. Teoret. Fiz., 108:6 (2018), 393–398 ; JETP Letters, 108:6 (2018), 368–373 |
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12. |
A. A. Nastulyavichus, N. A. Smirnov, S. I. Kudryashov, A. A. Ionin, I. N. Saraeva, N. I. Busleev, A. A. Rudenko, R. A. Khmelnitskii, D. A. Zayarnyi, “Formation of nanoparticles from thin silver films irradiated by laser pulses in air”, Kvantovaya Elektronika, 48:3 (2018), 251–254 [Quantum Electron., 48:3 (2018), 251–254 ] |
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