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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
K. A. Podgaetskii, A. V. Lobintsov, A. I. Danilov, A. V. Ivanov, M. A. Ladugin, A. A. Marmalyuk, E. V. Kuznetsov, V. V. Dyudelev, D. A. Mikhailov, D. V. Chistyakov, E. A. Kognovitskaya, S. N. Losev, S. H. Abdulrazak, A. V. Babichev, G. M. Savchenko, A. V. Lyutetskiy, S. O. Slipchenko, N. A. Pikhtin, A. G. Gladyshev, I. I. Novikov, L. Ya. Karachinsky, A. Yu. Egorov, G. S. Sokolovskii, “Квантовые каскадные лазеры InGaAs/AlInAs/InP с отражающими и просветляющими оптическими покрытиями”, Kvantovaya Elektronika, 54:2 (2024), 100–103 |
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2023 |
2. |
K. A. Podgaetskii, A. V. Lobintsov, A. I. Danilov, A. V. Ivanov, M. A. Ladugin, A. A. Marmalyuk, E. V. Kuznetsov, V. V. Dyudelev, D. A. Mikhailov, D. V. Chistyakov, A. V. Babichev, E. A. Kognovitskaya, A. V. Lyutetskiy, S. O. Slipchenko, N. A. Pikhtin, A. G. Gladyshev, I. I. Novikov, L. Ya. Karachinsky, A. Yu. Egorov, G. S. Sokolovskii, “Metal–dielectric mirror coatings for 4–5-μm quantum-cascade lasers”, Kvantovaya Elektronika, 53:8 (2023), 641–644 [Bull. Lebedev Physics Institute, 50:suppl. 12 (2023), S1356–S1360] |
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3. |
K. A. Podgaetskii, A. V. Lobintsov, A. I. Danilov, A. V. Ivanov, M. A. Ladugin, A. A. Marmalyuk, V. V. Dyudelev, D. A. Mikhailov, D. V. Chistyakov, A. V. Babichev, G. M. Savchenko, A. V. Lyutetskiy, S. O. Slipchenko, N. A. Pikhtin, A. G. Gladyshev, I. I. Novikov, L. Ya. Karachinsky, A. Yu. Egorov, G. S. Sokolovskii, “Dielectric highly reflective mirror coatings for quantum cascade lasers with 4 - 5 μm emission wavelength”, Kvantovaya Elektronika, 53:5 (2023), 370–373 |
1
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2022 |
4. |
S. O. Slipchenko, D. A. Veselov, V. V. Zolotarev, A. V. Lyutetskiy, A. A. Podoskin, Z. N. Sokolova, V. V. Shamakhov, I. S. Shashkin, P. S. Kop'ev, N. A. Pikhtin, “High-power laser diodes based on InGaAs(Р)/Al(In)GaAs(P)/GaAs heterostructures with low internal optical losses”, Kvantovaya Elektronika, 52:12 (2022), 1152–1165 [Bull. Lebedev Physics Institute, 50:suppl. 4 (2023), S494–S512] |
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5. |
V. V. Zolotarev, A. Rizaev, A. V. Lyutetskiy, S. O. Slipchenko, N. A. Pikhtin, “Lateral waveguide mode selection for the development of single-mode ridge lasers with a distributed Bragg mirror”, Kvantovaya Elektronika, 52:10 (2022), 889–894 [Bull. Lebedev Physics Institute, 50:suppl. 2 (2023), S154–S162] |
1
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2021 |
6. |
A. V. Babichev, E. S. Kolodeznyi, A. G. Gladyshev, D. V. Denisov, G. V. Voznyuk, M. I. Mitrofanov, D. A. Mikhailov, D. V. Chistyakov, D. I. Kuritsyn, V. V. Dyudelev, S. O. Slipchenko, A. V. Lyutetskiy, V. P. Evtikhiev, L. Ya. Karachinsky, I. I. Novikov, S. V. Morozov, G. S. Sokolovskii, N. A. Pikhtin, A. Yu. Egorov, “Quantum-cascade laser with radiation output through a textured layer”, Fizika i Tekhnika Poluprovodnikov, 55:11 (2021), 1081–1085 ; Semiconductors, 56:1 (2022), 1–4 |
7. |
A. V. Babichev, E. S. Kolodeznyi, A. G. Gladyshev, D. V. Denisov, G. V. Voznyuk, M. I. Mitrofanov, N. Yu. Kharin, V. Yu. Panevin, S. O. Slipchenko, A. V. Lyutetskiy, V. P. Evtikhiev, L. Ya. Karachinsky, I. I. Novikov, N. A. Pikhtin, A. Yu. Egorov, “Surface emitting quantum-cascade ring laser”, Fizika i Tekhnika Poluprovodnikov, 55:7 (2021), 602–606 ; Semiconductors, 55:7 (2021), 591–594 |
2
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8. |
A. V. Babichev, A. G. Gladyshev, D. V. Denisov, V. V. Dyudelev, D. A. Mikhailov, S. O. Slipchenko, A. V. Lyutetskiy, L. Ya. Karachinsky, I. I. Novikov, A. Yu. Andreev, I. V. Yarotskaya, K. A. Podgaetskii, A. A. Marmalyuk, A. A. Padalitsa, M. A. Ladugin, N. A. Pikhtin, G. S. Sokolovskii, A. Yu. Egorov, “Heterostructures of quantum-cascade lasers with nonselective overgrowth by metalorganic vapour phase epitaxy”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 47:24 (2021), 46–50 |
1
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9. |
V. N. Svetogorov, Yu. L. Ryaboshtan, N. A. Volkov, M. A. Ladugin, A. A. Padalitsa, A. A. Marmalyuk, K. V. Bakhvalov, D. A. Veselov, A. V. Lyutetskiy, V. A. Strelets, S. O. Slipchenko, N. A. Pikhtin, “High-power AlGaInAs/InP semiconductor lasers with an ultra-narrow waveguide emitting in the spectral range 1.9–2.0 μm”, Kvantovaya Elektronika, 51:10 (2021), 909–911 [Quantum Electron., 51:10 (2021), 909–911 ] |
1
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10. |
N. A. Volkov, T. A. Bagaev, D. R. Sabitov, A. Yu. Andreev, I. V. Yarotskaya, A. A. Padalitsa, M. A. Ladugin, A. A. Marmalyuk, K. V. Bakhvalov, D. A. Veselov, A. V. Lyutetskiy, N. A. Rudova, V. A. Strelets, S. O. Slipchenko, N. A. Pikhtin, “InGaAs/AlGaAs/GaAs semiconductor lasers ($\lambda$ = 900–920 nm) with broadened asymmetric waveguides and improved current–voltage characteristics”, Kvantovaya Elektronika, 51:10 (2021), 905–908 [Quantum Electron., 51:10 (2021), 905–908 ] |
3
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11. |
N. A. Volkov, V. N. Svetogorov, Yu. L. Ryaboshtan, A. Yu. Andreev, I. V. Yarotskaya, M. A. Ladugin, A. A. Padalitsa, A. A. Marmalyuk, S. O. Slipchenko, A. V. Lyutetskiy, D. A. Veselov, N. A. Pikhtin, “Comparison of AlGaInAs/InP semiconductor lasers (λ = 1450–1500 nm) with ultra-narrow and strongly asymmetric waveguides”, Kvantovaya Elektronika, 51:4 (2021), 283–286 [Quantum Electron., 51:4 (2021), 283–286 ] |
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12. |
N. A. Volkov, A. Yu. Andreev, I. V. Yarotskaya, Yu. L. Ryaboshtan, V. N. Svetogorov, M. A. Ladugin, A. A. Padalitsa, A. A. Marmalyuk, S. O. Slipchenko, A. V. Lyutetskiy, D. A. Veselov, N. A. Pikhtin, “Semiconductor AlGaInAs/InP lasers (λ = 1450 – 1500 nm) with a strongly asymmetric waveguide”, Kvantovaya Elektronika, 51:2 (2021), 133–136 [Quantum Electron., 51:2 (2021), 133–136 ] |
5
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2020 |
13. |
V. V. Dyudelev, D. A. Mikhailov, A. V. Babichev, S. N. Losev, E. A. Kognovitskaya, A. V. Lyutetskiy, S. O. Slipchenko, N. A. Pikhtin, A. G. Gladyshev, D. V. Denisov, I. I. Novikov, L. Ya. Karachinsky, V. I. Kuchinskii, A. Yu. Egorov, G. S. Sokolovskii, “Spectral dynamics of quantum cascade lasers generating frequency combs in the long-wavelength infrared range”, Zhurnal Tekhnicheskoi Fiziki, 90:8 (2020), 1333–1336 ; Tech. Phys., 65:8 (2020), 1281–1284 |
2
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14. |
A. V. Babichev, D. A. Pashnev, A. G. Gladyshev, A. S. Kurochkin, E. S. Kolodeznyi, L. Ya. Karachinsky, I. I. Novikov, D. V. Denisov, V. V. Dyudelev, G. S. Sokolovskii, D. A. Firsov, L. E. Vorob'ev, S. O. Slipchenko, A. V. Lyutetskiy, N. A. Pikhtin, A. Yu. Egorov, “Spectral characteristics of half-ring quantum-cascade lasers”, Optics and Spectroscopy, 128:8 (2020), 1165–1170 ; Optics and Spectroscopy, 128:8 (2020), 1187–1192 |
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15. |
I. S. Shashkin, A. Yu. Leshko, D. N. Nikolaev, V. V. Shamakhov, N. A. Rudova, K. V. Bakhvalov, A. V. Lyutetskiy, V. A. Kapitonov, V. V. Zolotarev, S. O. Slipchenko, N. A. Pikhtin, P. S. Kop'ev, “Light characteristics of narrow-stripe high-power semiconductor lasers (1060 nm) based on asymmetric AlGaAs/GaAs heterostructures with a broad waveguide”, Fizika i Tekhnika Poluprovodnikov, 54:4 (2020), 408–413 |
1
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16. |
V. V. Dyudelev, D. A. Mikhailov, V. Yu. Mylnikov, A. V. Babichev, S. N. Losev, E. A. Kognovitskaya, A. G. Gladyshev, L. Ya. Karachinsky, I. I. Novikov, D. V. Denisov, S. O. Slipchenko, A. V. Lyutetskiy, N. A. Pikhtin, V. I. Kuchinskii, A. Yu. Egorov, G. S. Sokolovskii, “A study of the spatial-emission characteristics of quantum-cascade lasers for the 8-$\mu$m spectral range”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 46:22 (2020), 51–54 ; Tech. Phys. Lett., 46:11 (2020), 1152–1155 |
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17. |
A. V. Babichev, A. G. Gladyshev, V. V. Dyudelev, L. Ya. Karachinsky, I. I. Novikov, D. V. Denisov, S. O. Slipchenko, A. V. Lyutetskiy, N. A. Pikhtin, G. S. Sokolovskii, A. Yu. Egorov, “Heterostructures of quantum-cascade laser for the spectral range of 4.6 $\mu$m for obtaining a continuous-wave lasing mode”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 46:9 (2020), 35–38 ; Tech. Phys. Lett., 46:5 (2020), 442–445 |
10
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18. |
V. N. Svetogorov, Yu. L. Ryaboshtan, M. A. Ladugin, A. A. Padalitsa, N. A. Volkov, A. A. Marmalyuk, S. O. Slipchenko, A. V. Lyutetskiy, D. A. Veselov, N. A. Pikhtin, “AlGaInAs/InP semiconductor lasers with an ultra-narrow waveguide and an increased electron barrier”, Kvantovaya Elektronika, 50:12 (2020), 1123–1125 [Quantum Electron., 50:12 (2020), 1123–1125 ] |
5
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19. |
V. V. Dyudelev, D. A. Mikhailov, A. V. Babichev, G. M. Savchenko, S. N. Losev, E. A. Kognovitskaya, A. V. Lyutetskiy, S. O. Slipchenko, N. A. Pikhtin, A. G. Gladyshev, D. V. Denisov, I. I. Novikov, L. Ya. Karachinsky, V. I. Kuchinskii, A. Yu. Egorov, G. S. Sokolovskii, “Development and study of high-power quantum-cascade lasers emitting at 4.5 – 4.6 μm”, Kvantovaya Elektronika, 50:11 (2020), 989–994 [Quantum Electron., 50:11 (2020), 989–994 ] |
9
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20. |
V. V. Dyudelev, D. A. Mikhailov, A. V. Babichev, S. N. Losev, E. A. Kognovitskaya, A. V. Lyutetskiy, S. O. Slipchenko, N. A. Pikhtin, A. G. Gladyshev, D. V. Denisov, I. I. Novikov, L. Ya. Karachinsky, V. I. Kuchinskii, A. Yu. Egorov, G. S. Sokolovskii, “10-W 4.6-μm quantum cascade lasers”, Kvantovaya Elektronika, 50:8 (2020), 720–721 [Quantum Electron., 50:8 (2020), 720–721 ] |
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2019 |
21. |
V. V. Dyudelev, D. A. Mikhailov, A. V. Babichev, S. N. Losev, D. V. Chistyakov, E. A. Kognovitskaya, D. D. Avrov, S. O. Slipchenko, A. V. Lyutetskiy, N. A. Pikhtin, A. G. Gladyshev, L. Ya. Karachinsky, I. I. Novikov, V. I. Kuchinskii, A. Yu. Egorov, G. S. Sokolovskii, “Generation of frequency combs by quantum cascade lasers emitting in the 8-$\mu$m wavelength range”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:20 (2019), 18–21 ; Tech. Phys. Lett., 45:10 (2019), 1027–1030 |
2
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22. |
A. V. Babichev, V. V. Dyudelev, A. G. Gladyshev, D. A. Mikhailov, A. S. Kurochkin, E. S. Kolodeznyi, V. E. Bugrov, V. N. Nevedomskiy, L. Ya. Karachinsky, I. I. Novikov, D. V. Denisov, A. S. Ionov, S. O. Slipchenko, A. V. Lyutetskiy, N. A. Pikhtin, G. S. Sokolovskii, A. Yu. Egorov, “High-power quantum-cascade lasers emitting in the 8-$\mu$m wavelength range”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:14 (2019), 48–51 ; Tech. Phys. Lett., 45:7 (2019), 735–738 |
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23. |
A. V. Babichev, A. G. Gladyshev, A. S. Kurochkin, V. V. Dyudelev, E. S. Kolodeznyi, G. S. Sokolovskii, V. E. Bugrov, L. Ya. Karachinsky, I. I. Novikov, D. V. Denisov, A. S. Ionov, S. O. Slipchenko, A. V. Lyutetskiy, N. A. Pikhtin, A. Yu. Egorov, “Room temperature lasing of single-mode arched-cavity quantum-cascade lasers”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:8 (2019), 31–33 ; Tech. Phys. Lett., 45:4 (2019), 398–400 |
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24. |
V. V. Dyudelev, D. A. Mikhailov, A. D. Andreev, E. A. Kognovitskaya, A. V. Lyutetskiy, S. O. Slipchenko, N. A. Pikhtin, A. G. Gladyshev, D. V. Denisov, K. O. Voropaev, A. S. Ionov, A. V. Babichev, I. I. Novikov, L. Ya. Karachinsky, V. I. Kuchinskii, A. Yu. Egorov, G. S. Sokolovskii, “Tunable single-frequency source based on a DFB laser array for the spectral region of 1.55 μm”, Kvantovaya Elektronika, 49:12 (2019), 1158–1162 [Quantum Electron., 49:12 (2019), 1158–1162 ] |
2
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25. |
V. V. Dyudelev, D. A. Mikhailov, D. V. Chistyakov, E. A. Kognovitskaya, A. V. Lyutetskiy, S. O. Slipchenko, N. A. Pikhtin, A. G. Gladyshev, D. V. Denisov, K. O. Voropaev, A. S. Ionov, A. V. Babichev, I. I. Novikov, L. Ya. Karachinsky, V. I. Kuchinskii, A. Yu. Egorov, G. S. Sokolovskii, “High-coupling distributed feedback lasers for the 1.55 μm spectral region”, Kvantovaya Elektronika, 49:9 (2019), 801–803 [Quantum Electron., 49:9 (2019), 801–803 ] |
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2018 |
26. |
V. V. Dyudelev, S. N. Losev, V. Yu. Mylnikov, A. V. Babichev, E. A. Kognovitskaya, S. O. Slipchenko, A. V. Lyutetskiy, N. A. Pikhtin, A. G. Gladyshev, L. Ya. Karachinsky, I. I. Novikov, A. Yu. Egorov, V. I. Kuchinskii, G. S. Sokolovskii, “High temperature laser generation of quantum-cascade lasers in the spectral region of 8 $\mu$m”, Fizika Tverdogo Tela, 60:11 (2018), 2251–2254 ; Phys. Solid State, 60:11 (2018), 2291–2294 |
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27. |
V. V. Dyudelev, S. N. Losev, V. Yu. Mylnikov, A. V. Babichev, E. A. Kognovitskaya, S. O. Slipchenko, A. V. Lyutetskiy, N. A. Pikhtin, A. G. Gladyshev, L. Ya. Karachinsky, I. I. Novikov, A. Yu. Egorov, V. I. Kuchinskii, G. S. Sokolovskii, “Turn-on dynamics of quantum cascade lasers with a wavelength of 8100 nm at room temperature”, Zhurnal Tekhnicheskoi Fiziki, 88:11 (2018), 1708–1710 ; Tech. Phys., 63:11 (2018), 1656–1658 |
12
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28. |
V. V. Dyudelev, S. N. Losev, V. Yu. Mylnikov, A. V. Babichev, E. A. Kognovitskaya, S. O. Slipchenko, A. V. Lyutetskiy, N. A. Pikhtin, A. G. Gladyshev, L. Ya. Karachinsky, I. I. Novikov, A. Yu. Egorov, V. I. Kuchinskii, G. S. Sokolovskii, “Dual-frequency generation in quantum cascade lasers of the 8-$\mu$m spectral range”, Optics and Spectroscopy, 125:3 (2018), 387–390 ; Optics and Spectroscopy, 125:3 (2018), 402–404 |
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29. |
V. V. Mamutin, N. D. Il'inskaya, A. A. Usikova, A. V. Lyutetskiy, “Ridge waveguide structure for lattice-matched quantum cascade lasers”, Fizika i Tekhnika Poluprovodnikov, 52:12 (2018), 1499–1502 ; Semiconductors, 52:12 (2018), 1603–1606 |
1
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30. |
V. V. Mamutin, A. P. Vasil'ev, A. V. Lyutetskiy, N. D. Il'inskaya, Yu. M. Zadiranov, A. N. Sofronov, D. A. Firsov, L. E. Vorob'ev, N. A. Maleev, V. M. Ustinov, “On the fabrication and study of lattice-matched heterostructures for quantum cascade lasers”, Fizika i Tekhnika Poluprovodnikov, 52:7 (2018), 812–815 ; Semiconductors, 52:7 (2018), 950–953 |
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31. |
V. V. Mamutin, A. P. Vasil'ev, A. V. Lyutetskiy, N. D. Il'inskaya, A. A. Usikova, Yu. M. Zadiranov, N. A. Maleev, A. N. Sofronov, D. A. Firsov, L. E. Vorob'ev, V. M. Ustinov, “Quantum-cascade lasers generating at the 4.8-$\mu$m wavelength at room temperature”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 44:18 (2018), 17–23 ; Tech. Phys. Lett., 44:9 (2018), 814–816 |
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32. |
A. A. Marmalyuk, Yu. L. Ryaboshtan, P. V. Gorlachuk, M. A. Ladugin, A. A. Padalitsa, S. O. Slipchenko, A. V. Lyutetskiy, D. A. Veselov, N. A. Pikhtin, “Effect of the waveguide layer thickness on output characteristics of semiconductor lasers with emission wavelength from 1500 to 1600 nm”, Kvantovaya Elektronika, 48:3 (2018), 197–200 [Quantum Electron., 48:3 (2018), 197–200 ] |
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2017 |
33. |
L. A. Kulakova, A. V. Lyutetskiy, I. S. Tarasov, “Polarization effects in quantum-well In$_{28}$Ga$_{72}$As/GaAs heterolasers”, Fizika Tverdogo Tela, 59:9 (2017), 1684–1690 ; Phys. Solid State, 59:9 (2017), 1706–1712 |
34. |
A. A. Marmalyuk, Yu. L. Ryaboshtan, P. V. Gorlachuk, M. A. Ladugin, A. A. Padalitsa, S. O. Slipchenko, A. V. Lyutetskiy, D. A. Veselov, N. A. Pikhtin, “Semiconductor AlGaInAs/InP lasers with ultra-narrow waveguides”, Kvantovaya Elektronika, 47:3 (2017), 272–274 [Quantum Electron., 47:3 (2017), 272–274 ] |
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2016 |
35. |
D. A. Veselov, I. S. Shashkin, Yu. K. Bobretsova, K. V. Bakhvalov, A. V. Lyutetskiy, V. A. Kapitonov, N. A. Pikhtin, S. O. Slipchenko, Z. N. Sokolova, I. S. Tarasov, “Study of the pulse characteristics of semiconductor lasers with a broadened waveguide at low temperatures (110–120 K)”, Fizika i Tekhnika Poluprovodnikov, 50:10 (2016), 1414–1419 ; Semiconductors, 50:10 (2016), 1396–1402 |
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36. |
D. A. Veselov, I. S. Shashkin, K. V. Bakhvalov, A. V. Lyutetskiy, N. A. Pikhtin, M. G. Rastegaeva, S. O. Slipchenko, E. A. Bechvay, V. A. Strelets, V. V. Shamakhov, I. S. Tarasov, “On the problem of internal optical loss and current leakage in laser heterostructures based on AlGaInAs/InP solid solutions”, Fizika i Tekhnika Poluprovodnikov, 50:9 (2016), 1247–1252 ; Semiconductors, 50:9 (2016), 1225–1230 |
8
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37. |
I. M. Gadzhiev, M. S. Buyalo, A. E. Gubenko, A. Yu. Egorov, A. A. Usikova, N. D. Il'inskaya, A. V. Lyutetskiy, Yu. M. Zadiranov, E. L. Portnoĭ, “Switching between the mode-locking and Q-switching modes in two-section QW lasers upon a change in the absorber properties due to the Stark effect”, Fizika i Tekhnika Poluprovodnikov, 50:6 (2016), 843–847 ; Semiconductors, 50:6 (2016), 828–831 |
3
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38. |
Z. N. Sokolova, K. V. Bakhvalov, A. V. Lyutetskiy, N. A. Pikhtin, I. S. Tarasov, L. V. Asryan, “Dependence of the electron capture velocity on the quantum-well depth in semiconductor lasers”, Fizika i Tekhnika Poluprovodnikov, 50:5 (2016), 679–682 ; Semiconductors, 50:5 (2016), 667–670 |
5
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2015 |
39. |
D. A. Veselov, K. R. Ayusheva, I. S. Shashkin, K. V. Bakhvalov, V. V. Vasil'eva, L. S. Vavilova, A. V. Lyutetskiy, N. A. Pikhtin, S. O. Slipchenko, Z. N. Sokolova, I. S. Tarasov, “Optimisation of cavity parameters for lasers based on AlGaInAsP/InP solid solutions (λ=1470 nm)”, Kvantovaya Elektronika, 45:10 (2015), 879–883 [Quantum Electron., 45:10 (2015), 879–883 ] |
2
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40. |
D. A. Veselov, N. A. Pikhtin, A. V. Lyutetskiy, D. N. Nikolaev, S. O. Slipchenko, Z. N. Sokolova, V. V. Shamakhov, I. S. Shashkin, N. V. Voronkova, I. S. Tarasov, “Study of the absorption coefficient in layers of a semiconductor laser heterostructure”, Kvantovaya Elektronika, 45:7 (2015), 604–606 [Quantum Electron., 45:7 (2015), 604–606 ] |
15
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41. |
D. A. Veselov, N. A. Pikhtin, A. V. Lyutetskiy, D. N. Nikolaev, S. O. Slipchenko, Z. N. Sokolova, V. V. Shamakhov, I. S. Shashkin, V. A. Kapitonov, I. S. Tarasov, “Effect of laser cavity parameters on saturation of light – current characteristics of high-power pulsed lasers”, Kvantovaya Elektronika, 45:7 (2015), 597–600 [Quantum Electron., 45:7 (2015), 597–600 ] |
20
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2014 |
42. |
D. A. Veselov, V. A. Kapitonov, N. A. Pikhtin, A. V. Lyutetskiy, D. N. Nikolaev, S. O. Slipchenko, Z. N. Sokolova, V. V. Shamakhov, I. S. Shashkin, I. S. Tarasov, “Saturation of light – current characteristics of high-power lasers (λ = 1.0 – 1.1 mm) in pulsed regime”, Kvantovaya Elektronika, 44:11 (2014), 993–996 [Quantum Electron., 44:11 (2014), 993–996 ] |
40
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43. |
V. V. Zolotarev, A. Yu. Leshko, N. A. Pikhtin, A. V. Lyutetskiy, S. O. Slipchenko, K. V. Bakhvalov, Ya. V. Lubyanskiy, M. G. Rastegaeva, I. S. Tarasov, “Spectral characteristics of multimode semiconductor lasers with a high-order surface diffraction grating”, Kvantovaya Elektronika, 44:10 (2014), 907–911 [Quantum Electron., 44:10 (2014), 907–911 ] |
7
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2024 |
44. |
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