|
|
Publications in Math-Net.Ru |
Citations |
|
2021 |
1. |
N. V. Kryzhanovskaya, A. S. Dragunova, S. D. Komarov, A. M. Nadtochiy, A. G. Gladyshev, A. V. Babichev, A. V. Uvarov, V. V. Andryushkin, D. V. Denisov, E. S. Kolodeznyi, I. I. Novikov, L. Ya. Karachinsky, A. Yu. Egorov, “Optical properties of three-dimensional InGaP(As) islands formed by substitution of fifth-group elements”, Optics and Spectroscopy, 129:2 (2021), 218–222 ; Optics and Spectroscopy, 129:2 (2021), 256–260 |
1
|
2. |
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 |
3. |
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
|
4. |
S. A. Blokhin, M. A. Bobrov, N. A. Maleev, A. A. Blokhin, A. P. Vasil'ev, A. G. Kuz'menkov, E. S. Kolodeznyi, V. A. Shchukin, N. N. Ledentsov, S. Reitzenstein, V. M. Ustinov, “The design of an electrically-driven single photon source of the 1.3-$\mu$m spectral range based on a vertical microcavity with intracavity contacts”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 47:5 (2021), 23–27 ; Tech. Phys. Lett., 47:3 (2021), 222–226 |
1
|
|
2020 |
5. |
A. G. Gladyshev, A. V. Babichev, V. V. Andryushkin, D. V. Denisov, V. N. Nevedomskiy, E. S. Kolodeznyi, I. I. Novikov, L. Ya. Karachinsky, A. Yu. Egorov, “Studying the optical and structural properties of three-dimensional InGaP(As) islands formed by substitution of elements of the fifth group”, Zhurnal Tekhnicheskoi Fiziki, 90:12 (2020), 2139–2142 ; Tech. Phys., 65:12 (2020), 2047–2050 |
2
|
6. |
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 |
7
|
7. |
S. S. Rochas, I. I. Novikov, A. G. Gladyshev, E. S. Kolodeznyi, A. V. Babichev, V. V. Andryushkin, V. N. Nevedomskiy, D. V. Denisov, L. Ya. Karachinsky, A. Yu. Egorov, V. E. Bugrov, “The influence of the parameters of a short-period InGaAs/InGaAlAs superlattice on photoluminescence efficiency”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 46:22 (2020), 27–30 ; Tech. Phys. Lett., 46:11 (2020), 1128–1131 |
2
|
|
2019 |
8. |
L. Ya. Karachinsky, I. I. Novikov, A. V. Babichev, A. G. Gladyshev, E. S. Kolodeznyi, S. S. Rochas, A. S. Kurochkin, Yu. K. Bobretsova, A. A. Klimov, D. V. Denisov, K. O. Voropaev, A. S. Ionov, V. E. Bugrov, A. Yu. Egorov, “Optical gain in laser heterostructures with an active area based on an InGaAs/InGaAlAs superlattice”, Optics and Spectroscopy, 127:6 (2019), 963–966 ; Optics and Spectroscopy, 127:6 (2019), 1053–1056 |
14
|
9. |
S. A. Blokhin, M. A. Bobrov, A. A. Blokhin, A. G. Kuz'menkov, N. A. Maleev, V. M. Ustinov, E. S. Kolodeznyi, S. S. Rochas, A. V. Babichev, I. I. Novikov, A. G. Gladyshev, L. Ya. Karachinsky, D. V. Denisov, K. O. Voropaev, A. S. Ionov, A. Yu. Egorov, “Analysis of the internal optical losses of the vertical-cavity surface-emitting laser of the spectral range of 1.55 $\mu$m formed by a plate sintering technique”, Optics and Spectroscopy, 127:1 (2019), 145–149 ; Optics and Spectroscopy, 127:1 (2019), 140–144 |
9
|
10. |
S. A. Blokhin, M. A. Bobrov, A. A. Blokhin, A. G. Kuz'menkov, N. A. Maleev, V. M. Ustinov, E. S. Kolodeznyi, S. S. Rochas, A. V. Babichev, I. I. Novikov, A. G. Gladyshev, L. Ya. Karachinsky, D. V. Denisov, K. O. Voropaev, A. S. Ionov, A. Yu. Egorov, “Influence of output optical losses on the dynamic characteristics of 1.55-$\mu$m wafer-fused vertical-cavity surface-emitting lasers”, Fizika i Tekhnika Poluprovodnikov, 53:8 (2019), 1128–1134 ; Semiconductors, 53:8 (2019), 1104–1109 |
6
|
11. |
A. V. Babichev, A. G. Gladyshev, A. S. Kurochkin, E. S. Kolodeznyi, V. N. Nevedomskiy, L. Ya. Karachinsky, I. I. Novikov, A. N. Sofronov, A. Yu. Egorov, “Spontaneous emission and lasing of a two-wavelength quantum-cascade laser”, Fizika i Tekhnika Poluprovodnikov, 53:3 (2019), 365–369 ; Semiconductors, 53:3 (2019), 345–349 |
1
|
12. |
A. V. Babichev, D. A. Pashnev, A. G. Gladyshev, A. S. Kurochkin, E. S. Kolodeznyi, L. Ya. Karachinsky, I. I. Novikov, D. V. Denisov, L. Boulley, D. A. Firsov, L. E. Vorob'ev, N. A. Pikhtin, A. Bousseksou, A. Yu. Egorov, “Spectral shift of quantum-cascade laser emission under the action of control voltage”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:22 (2019), 21–23 ; Tech. Phys. Lett., 45:11 (2019), 1136–1139 |
3
|
13. |
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 |
16
|
14. |
M. V. Maksimov, Yu. M. Shernyakov, F. I. Zubov, I. I. Novikov, A. G. Gladyshev, L. Ya. Karachinsky, D. V. Denisov, S. S. Rochas, E. S. Kolodeznyi, A. Yu. Egorov, A. E. Zhukov, “Temperature dependence of characteristics of diode lasers with narrow quantum wells of the 1.55 $\mu$m spectral range based on phosphorous-free heterostructures”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:11 (2019), 20–23 ; Tech. Phys. Lett., 45:6 (2019), 549–552 |
1
|
15. |
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 |
17
|
|
2018 |
16. |
E. S. Kolodeznyi, S. S. Rochas, A. S. Kurochkin, A. V. Babichev, I. I. Novikov, A. G. Gladyshev, L. Ya. Karachinsky, D. V. Denisov, Yu. K. Bobretsova, A. A. Klimov, S. A. Blokhin, K. O. Voropaev, A. S. Ionov, “Optical gain of 1550-nm range multiple-quantum-well heterostructures and limiting modulation frequencies of vertical-cavity surface-emitting lasers based on them”, Optics and Spectroscopy, 125:2 (2018), 229–233 ; Optics and Spectroscopy, 125:2 (2018), 238–242 |
8
|
17. |
E. S. Kolodeznyi, A. S. Kurochkin, S. S. Rochas, A. V. Babichev, I. I. Novikov, A. G. Gladyshev, L. Ya. Karachinsky, A. V. Savel'ev, A. Yu. Egorov, D. V. Denisov, “On the impact of barrier-layer doping on the photoluminescence efficiency of InGaAlAs/InGaAs/InP strained-layer heterostructures”, Fizika i Tekhnika Poluprovodnikov, 52:9 (2018), 1034–1037 ; Semiconductors, 52:9 (2018), 1156–1159 |
4
|
18. |
A. V. Babichev, A. G. Gladyshev, A. S. Kurochkin, E. S. Kolodeznyi, G. S. Sokolovskii, V. E. Bugrov, L. Ya. Karachinsky, I. I. Novikov, A. Bousseksou, A. Yu. Egorov, “Room temperature lasing of multi-stage quantum-cascade lasers at 8 $\mu$m wavelength”, Fizika i Tekhnika Poluprovodnikov, 52:8 (2018), 954–957 ; Semiconductors, 52:8 (2018), 1082–1085 |
17
|
19. |
A. V. Babichev, A. S. Kurochkin, E. S. Kolodeznyi, A. V. Filimonov, A. A. Usikova, V. N. Nevedomskiy, A. G. Gladyshev, D. V. Denisov, L. Ya. Karachinsky, I. I. Novikov, A. Yu. Egorov, “Heterostructures of single-wavelength and dual-wavelength quantum-cascade lasers”, Fizika i Tekhnika Poluprovodnikov, 52:6 (2018), 597–602 ; Semiconductors, 52:6 (2018), 745–749 |
16
|
20. |
M. S. Buyalo, I. M. Gadzhiev, N. D. Il'inskaya, A. A. Usikova, I. I. Novikov, L. Ya. Karachinsky, E. S. Kolodeznyi, V. E. Bugrov, A. Yu. Egorov, E. L. Portnoĭ, “Mode-locked lasers with “thin” quantum wells in 1.55 $\mu$m spectral range”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 44:4 (2018), 95–102 ; Tech. Phys. Lett., 44:2 (2018), 174–177 |
1
|
|
2017 |
21. |
A. V. Babichev, A. G. Gladyshev, A. V. Filimonov, V. N. Nevedomskiy, A. S. Kurochkin, E. S. Kolodeznyi, G. S. Sokolovskii, V. E. Bugrov, L. Ya. Karachinsky, I. I. Novikov, A. Bousseksou, A. Yu. Egorov, “Heterostructures for quantum-cascade lasers of the wavelength range of 7–8 $\mu$m”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 43:14 (2017), 64–71 ; Tech. Phys. Lett., 43:7 (2017), 666–669 |
33
|
|
2016 |
22. |
I. I. Novikov, L. Ya. Karachinsky, E. S. Kolodeznyi, V. E. Bugrov, A. S. Kurochkin, A. G. Gladyshev, A. V. Babichev, I. M. Gadzhiev, M. S. Buyalo, Yu. M. Zadiranov, A. A. Usikova, Yu. M. Shernyakov, A. V. Savel'ev, I. A. Nyapshaev, A. Yu. Egorov, “On the gain properties of “thin” elastically strained InGaAs/InGaAlAs quantum wells emitting in the near-infrared spectral region near 1550 nm”, Fizika i Tekhnika Poluprovodnikov, 50:10 (2016), 1429–1433 ; Semiconductors, 50:10 (2016), 1412–1415 |
9
|
|
Organisations |
|
|
|
|