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Publications in Math-Net.Ru |
Citations |
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2024 |
| 1. |
K. A. Vereshchagin, V. D. Kobtsev, S. A. Kostritsa, D. N. Kozlov, V. V. Smirnov, V. I. Fabelinskyĭ, “Thermometry of spatially inhomogeneous methane–air flame using two-color planar laser-induced fluorescence and coherent anti-Stokes raman scattering spectroscopy”, Kvantovaya Elektronika, 54:3 (2024), 188–195 [Bull. Lebedev Physics Institute, 51:suppl. 6 (2024), S489–S498] |
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2023 |
| 2. |
K. O. Aiyyzhy, E. V. Barmina, V. D. Kobtsev, D. N. Kozlov, S. A. Kostritsa, S. N. Orlov, A. M. Savel'ev, V. V. Smirnov, N. S. Titova, G. A. Shafeev, “Optical spectroscopic study of diffusive combustion of a suspension of boron nanoparticles in isopropanol in cocurrent oxygen flow”, Fizika Goreniya i Vzryva, 59:2 (2023), 49–62 ; Combustion, Explosion and Shock Waves, 59:2 (2023), 167–179 |
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2022 |
| 3. |
E. V. Barmina, V. D. Kobtsev, S. A. Kostritsa, S. N. Orlov, V. V. Smirnov, M. I. Zhilnikova, O. V. Uvarov, G. A. Shafeev, “Laser synthesis of nanocomposite hydrocarbon fuel and CARS diagnostics of its combustion flame”, Kvantovaya Elektronika, 52:1 (2022), 100–104 [Quantum Electron., 52:1 (2022), 100–104 ] |
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2020 |
| 4. |
P. S. Kuleshov, V. D. Kobtsev, “Distribution of aluminum clusters and their ignition in air during dispersion of aluminum nanoparticles in a shock wave”, Fizika Goreniya i Vzryva, 56:5 (2020), 80–90 ; Combustion, Explosion and Shock Waves, 56:5 (2020), 566–575 |
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2015 |
| 5. |
V. D. Kobtsev, D. N. Kozlov, S. A. Kostritsa, V. V. Smirnov, O. M. Stel'makh, “Temperature fluctuations in turbulent flame measured using coherent anti-Stokes Raman scattering”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 41:15 (2015), 90–97 ; Tech. Phys. Lett., 41:8 (2015), 756–758 |
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2013 |
| 6. |
D. N. Kozlov, V. D. Kobtsev, O. M. Stel'makh, V. V. Smirnov, E. V. Stepanov, “Determination of local concentration of H<sub>2</sub>O molecules and gas temperature in the process of hydrogen – oxygen gas mixture heating by means of linear and nonlinear laser spectroscopy”, Kvantovaya Elektronika, 43:1 (2013), 79–86 [Quantum Electron., 43:1 (2013), 79–86 ] |
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