|
|
Publications in Math-Net.Ru |
Citations |
|
2023 |
1. |
S. O. Slipchenko, A. A. Podoskin, D. N. Nikolaev, V. V. Shamakhov, I. S. Shashkin, M. Kandratov, I. Gordeev, A. E. Grishin, A. E. Kazakova, P. S. Gavrina, K. Bakhvalov, P. S. Kop'ev, N. A. Pikhtin, “High-power multimode semiconductor lasers (976 nm) based on asymmetric heterostructures with a broadened waveguide and reduced vertical divergence”, Kvantovaya Elektronika, 53:5 (2023), 374–378 [Bull. Lebedev Physics Institute, 50:suppl. 9 (2023), S976–S983] |
2. |
D. N. Nikolaev, I. V. Lomonosov, “Equation of state of iron oxide at a pressure $\le1$ TPa”, TVT, 61:2 (2023), 318–320 ; High Temperature, 61:2 (2023), 291–293 |
1
|
|
2021 |
3. |
P. V. Seredin, D. L. Goloshchapov, Yu. Yu. Khudyakov, I. N. Arsent'ev, D. N. Nikolaev, N. A. Pikhtin, S. O. Slipchenko, H. Leiste, “Structural and spectroscopic studies of epitaxial GaAs layers grown on compliant substrates based on a superstructure layer and protoporous silicon”, Fizika i Tekhnika Poluprovodnikov, 55:1 (2021), 86–95 ; Semiconductors, 55:1 (2021), 122–131 |
1
|
4. |
P. V. Seredin, D. L. Goloshchapov, I. N. Arsent'ev, D. N. Nikolaev, N. A. Pikhtin, S. O. Slipchenko, “Spectroscopic studies of integrated GaAs/Si heterostructures”, Fizika i Tekhnika Poluprovodnikov, 55:1 (2021), 34–40 ; Semiconductors, 55:1 (2021), 44–50 |
3
|
5. |
M. I. Kulish, V. B. Mintsev, S. V. Dudin, D. N. Nikolaev, I. V. Lomonosov, V. E. Fortov, “Измерения коэффициента пропускания кремния под воздействием излучения интенсивных ударных волн в ксеноне”, TVT, 59:6 (2021), 956–959 |
6. |
M. I. Kulish, V. B. Mintsev, S. V. Dudin, D. N. Nikolaev, I. V. Lomonosov, V. E. Fortov, “Излучение кремния при давлении ударного сжатия $68$ ГПа и в процессе разгрузки в вакуум”, TVT, 59:6 (2021), 865–868 |
1
|
7. |
D. N. Nikolaev, M. I. Kulish, S. V. Dudin, V. B. Mintsev, I. V. Lomonosov, V. E. Fortov, “Ударная сжимаемость монокристаллического кремния в диапазоне давлений $280$–$510$ ГПа”, TVT, 59:6 (2021), 860–864 |
5
|
|
2020 |
8. |
I. S. Shashkin, A. Yu. Leshko, D. N. Nikolaev, V. V. Shamakhov, D. A. Veselov, N. A. Rudova, K. V. Bakhvalov, V. V. Zolotarev, S. O. Slipchenko, N. A. Pikhtin, P. S. Kop'ev, “Single-mode lasers (1050 nm) of mesa-stripe design based on an AlGaAs/GaAs heterostructure with an ultra-narrow waveguide”, Fizika i Tekhnika Poluprovodnikov, 54:4 (2020), 414–419 ; Semiconductors, 54:4 (2020), 489–494 |
5
|
9. |
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
|
|
2019 |
10. |
Ya. V. Levitskii, M. I. Mitrofanov, G. V. Voznyuk, D. N. Nikolaev, M. N. Mizerov, V. P. Evtikhiev, “Changes in the photoluminescence properties of semiconductor heterostructures after ion-beam etching”, Fizika i Tekhnika Poluprovodnikov, 53:11 (2019), 1579–1583 ; Semiconductors, 53:11 (2019), 1545–1549 |
2
|
11. |
V. V. Shamakhov, D. N. Nikolaev, V. S. Golovin, D. A. Veselov, S. O. Slipchenko, N. A. Pikhtin, “Study of multimode semiconductor lasers with buried mesas”, Kvantovaya Elektronika, 49:12 (2019), 1172–1174 [Quantum Electron., 49:12 (2019), 1172–1174 ] |
1
|
|
2018 |
12. |
P. V. Seredin, D. L. Goloshchapov, D. S. Zolotukhin, A. S. Len'shin, A. N. Lukin, Yu. Yu. Khudyakov, I. N. Arsent'ev, A. V. Zhabotinsky, D. N. Nikolaev, N. A. Pikhtin, “Effect of misorientation and preliminary etching of the substrate on the structural and optical properties of integrated GaAs/Si(100) heterostructures produced by vapor phase epitaxy”, Fizika i Tekhnika Poluprovodnikov, 52:8 (2018), 881–890 ; Semiconductors, 52:8 (2018), 1012–1021 |
3
|
13. |
P. V. Seredin, A. S. Len'shin, A. V. Fedyukin, I. N. Arsent'ev, A. V. Zhabotinsky, D. N. Nikolaev, Harald Leiste, Monika Rinke, “Influence of substrate misorientation on the composition and the structural and photoluminescence properties of epitaxial layers grown on GaAs(100)”, Fizika i Tekhnika Poluprovodnikov, 52:1 (2018), 118–124 ; Semiconductors, 52:1 (2018), 112–117 |
5
|
|
2017 |
14. |
P. V. Seredin, A. S. Len'shin, Yu. Yu. Khudyakov, I. N. Arsent'ev, N. A. Kalyuzhnyy, S. A. Mintairov, D. N. Nikolaev, T. Prutskij, “Experimental studies of the effects of atomic ordering in epitaxial Ga$_{x}$In$_{1-x}$P alloys on their structural and morphological properties”, Fizika i Tekhnika Poluprovodnikov, 51:8 (2017), 1131–1137 ; Semiconductors, 51:8 (2017), 1087–1092 |
1
|
15. |
P. V. Seredin, A. S. Len'shin, I. N. Arsent'ev, A. V. Zhabotinsky, D. N. Nikolaev, I. S. Tarasov, V. V. Shamakhov, Tatiana Prutskij, Harald Leiste, Monika Rinke, “Epitaxial Al$_{x}$Ga$_{1-x}$As : Mg alloys with different conductivity types”, Fizika i Tekhnika Poluprovodnikov, 51:1 (2017), 124–132 ; Semiconductors, 51:1 (2017), 122–130 |
|
2015 |
16. |
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
|
17. |
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
|
|
2014 |
18. |
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
|
|
Organisations |
|
|
|
|