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Publications in Math-Net.Ru |
Citations |
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2022 |
1. |
G. V. Kuptsov, V. A. Petrov, V. V. Petrov, “Algorithm for determining the parameters of Lorentzian resonance curves”, Kvantovaya Elektronika, 52:10 (2022), 948–954 [Bull. Lebedev Physics Institute, 50:suppl. 2 (2023), S240–S249] |
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2021 |
2. |
G. V. Kuptsov, V. A. Petrov, V. V. Petrov, A. V. Laptev, A. O. Konovalova, A. V. Kirpichnikov, E. V. Pestryakov, “Laser amplification in an Yb : YAG active mirror with a significant temperature gradient”, Kvantovaya Elektronika, 51:8 (2021), 679–682 [Quantum Electron., 51:8 (2021), 679–682 ] |
7
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2020 |
3. |
V. V. Petrov, V. A. Petrov, G. V. Kuptsov, A. V. Laptev, A. V. Kirpichnikov, E. V. Pestryakov, “Modelling of the laser amplification process with allowance for the effect of the temperature distribution in an Yb : YAG gain element on the thermophysical and lasing characteristics of the medium”, Kvantovaya Elektronika, 50:4 (2020), 315–320 [Quantum Electron., 50:4 (2020), 315–320 ] |
8
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2019 |
4. |
V. V. Petrov, G. V. Kuptsov, A. I. Nozdrina, V. A. Petrov, A. V. Laptev, A. V. Kirpichnikov, E. V. Pestryakov, “Contactless method for studying temperature within the active element of a multidisk cryogenic amplifier”, Kvantovaya Elektronika, 49:4 (2019), 358–361 [Quantum Electron., 49:4 (2019), 358–361 ] |
18
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2018 |
5. |
V. V. Petrov, G. V. Kuptsov, V. A. Petrov, A. V. Laptev, A. V. Kirpichnikov, E. V. Pestryakov, “Optimisation of a multi-disk cryogenic amplifier for a high-intensity, high-repetition-rate laser system”, Kvantovaya Elektronika, 48:4 (2018), 358–362 [Quantum Electron., 48:4 (2018), 358–362 ] |
13
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2016 |
6. |
G. V. Kuptsov, V. V. Petrov, A. V. Laptev, V. A. Petrov, E. V. Pestryakov, “Simulation of picosecond pulse propagation in fibre-based radiation shaping units”, Kvantovaya Elektronika, 46:9 (2016), 801–805 [Quantum Electron., 46:9 (2016), 801–805 ] |
9
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2015 |
7. |
S. N. Bagayev, V. V. Osipov, E. V. Pestryakov, V. I. Solomonov, V. A. Shitov, R. N. Maksimov, A. N. Orlov, V. V. Petrov, “Laser ceramics with disordered crystalline structure”, Prikl. Mekh. Tekh. Fiz., 56:1 (2015), 180–189 ; J. Appl. Mech. Tech. Phys., 56:1 (2015), 150–157 |
9
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2014 |
8. |
V. V. Petrov, E. V. Pestryakov, A. V. Laptev, V. A. Petrov, G. V. Kuptsov, V. I. Trunov, S. A. Frolov, “Multiterawatt femtosecond laser system with kilohertz pulse repetition rate”, Kvantovaya Elektronika, 44:5 (2014), 452–457 [Quantum Electron., 44:5 (2014), 452–457 ] |
10
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1993 |
9. |
E. V. Pestryakov, V. V. Petrov, V. I. Trunov, A. I. Alimpiev, “Generation of tunable radiation on Cr<sup>3+</sup> ions in a flashlamp-pumped BeAl<sub>6</sub>O<sub>10</sub> crystal”, Kvantovaya Elektronika, 20:7 (1993), 665–668 [Quantum Electron., 23:7 (1993), 575–577 ] |
3
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1988 |
10. |
A. I. Alimpiev, E. V. Pestryakov, V. V. Petrov, V. P. Solntsev, V. I. Trunov, V. N. Matrosov, “Tunable lasing due to the <sup>4</sup><i>T</i><sub>2</sub>–<sup>4</sup><i>A</i><sub>2</sub> electronic–vibrational transition in Cr<sup>3+</sup> ions in BeAl<sub>6</sub>O<sub>10</sub>”, Kvantovaya Elektronika, 15:3 (1988), 509–511 [Sov J Quantum Electron, 18:3 (1988), 323–324 ] |
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Organisations |
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