|
|
|
Publications in Math-Net.Ru |
Citations |
|
2025 |
| 1. |
A. H. Badr, V. S. Sykhomlinov, A. S. Mustafaev, O. D. Berbeneva, “Kinetic theory of the cathode layer in low-voltage beam discharges”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 51:23 (2025), 25–27 |
|
2023 |
| 2. |
N. A. Timofeev, V. S. Sykhomlinov, G. Zissis, I. Yu. Mukharaeva, V. S. Borodina, Yu. È. Skoblo, “Optical radiation of high-pressure xenon discharge plasma: spectral, integral and energy characteristics”, Optics and Spectroscopy, 131:12 (2023), 1613–1617 |
|
2022 |
| 3. |
N. A. Timofeev, V. S. Sykhomlinov, I. Yu. Mukharaeva, Yu. È. Skoblo, “Influence of the electrode shape on the optical radiation of a high-pressure short-arc xenon discharge plasma”, Optics and Spectroscopy, 130:5 (2022), 804–808 |
|
2021 |
| 4. |
V. S. Sykhomlinov, R. M. Matveev, A. S. Mustafaev, V. A. Pavlov, S. V. Gordeev, “Effect of electron energy distribution function in plasma and energy dispersion of electron beam on the stability of a low-voltage beam discharge”, Zhurnal Tekhnicheskoi Fiziki, 91:4 (2021), 579–588 ; Tech. Phys., 66:12 (2021), 1301–1310 |
4
|
| 5. |
A. S.-U. Mustafaev, A. Yu. Grabovskii, V. S. Sykhomlinov, “Suppression of plasma instabilities in the plasma of a three-electrode current and voltage stabilizer”, TVT, 59:3 (2021), 323–329 ; High Temperature, 59:2-6 (2021), 155–161 |
|
2020 |
| 6. |
A. S. Mustafaev, V. S. Sykhomlinov, “Indicatrix determination of electron elastic scattering by an atom based on probe measurements of distribution functions of scattered electrons in a low-voltage beam discharge in inert gases”, Zhurnal Tekhnicheskoi Fiziki, 90:4 (2020), 586–592 ; Tech. Phys., 65:4 (2020), 560–567 |
1
|
| 7. |
V. S. Sykhomlinov, A. S. Mustafaev, A. A. Strakhova, N. A. Timofeev, “Destruction of a stationary vortex in an elastic medium by energy deposition”, Zhurnal Tekhnicheskoi Fiziki, 90:4 (2020), 574–580 ; Tech. Phys., 65:4 (2020), 548–554 |
|
2019 |
| 8. |
N. A. Timofeev, V. S. Sykhomlinov, G. Zissis, I. Yu. Mukharaeva, D. V. Mikhailov, P. Dupuis, “Simulation of an ultrahigh-pressure short-arc xenon discharge plasma”, Zhurnal Tekhnicheskoi Fiziki, 89:10 (2019), 1556–1562 ; Tech. Phys., 64:10 (2019), 1373–1379 |
2
|
| 9. |
O. Murillo, A. S.-U. Mustafaev, V. S. Sykhomlinov, “Structure of the wall sheath in a gas-discharge plasma for an arbitrary orientation of a flat probe relative to the electric field in the plasma”, Zhurnal Tekhnicheskoi Fiziki, 89:10 (2019), 1545–1555 ; Tech. Phys., 64:10 (2019), 1462–1472 |
1
|
| 10. |
O. Murillo, A. S. Mustafaev, V. S. Sykhomlinov, “Kinetic theory of the wall sheath for arbitrary conditions in a gas-discharge plasma”, Zhurnal Tekhnicheskoi Fiziki, 89:9 (2019), 1384–1394 |
3
|
|
2018 |
| 11. |
A. S.-U. Mustafaev, V. O. Nekuchaev, V. S. Sykhomlinov, “Effect of elastic collisions on the ion distribution function in parent gas discharge plasma”, TVT, 56:2 (2018), 168–179 ; High Temperature, 56:2 (2018), 162–172 |
2
|
| 12. |
V. S. Sykhomlinov, A. S.-U. Mustafaev, “Analytical theory of energy relaxation upon propagation of a high-energy electron beam in gas”, TVT, 56:1 (2018), 14–23 ; High Temperature, 56:1 (2018), 10–19 |
2
|
|
2017 |
| 13. |
A. S.-U. Mustafaev, V. O. Nekuchaev, V. S. Sykhomlinov, G. I. Korshunov, “Is the collecting surface of a flat one-sided probe constant when measuring the ion distribution function?”, Zhurnal Tekhnicheskoi Fiziki, 87:12 (2017), 1834–1843 ; Tech. Phys., 62:12 (2017), 1833–1842 |
1
|
| 14. |
V. S. Sykhomlinov, A. S.-U. Mustafaev, A. A. Strakhova, O. Murillo, “New possibilities of probe detection of anisotropic charged-particle distribution functions in an arbitrary-symmetry plasma”, Zhurnal Tekhnicheskoi Fiziki, 87:12 (2017), 1824–1833 ; Tech. Phys., 62:12 (2017), 1822–1832 |
3
|
| 15. |
A. S.-U. Mustafaev, V. O. Nekuchaev, V. S. Sykhomlinov, “Ion velocity distribution function in intrinsic gas at cryogenic gas temperatures”, Zhurnal Tekhnicheskoi Fiziki, 87:3 (2017), 341–348 ; Tech. Phys., 62:3 (2017), 365–373 |
| 16. |
A. S.-U. Mustafaev, V. S. Sykhomlinov, M. A. Ainov, “Ion velocity distribution function in intrinsic gas plasma under conditions of resonance recharging as a main process. Theory”, TVT, 55:4 (2017), 498–508 ; High Temperature, 55:4 (2017), 481–490 |
8
|
| 17. |
A. S.-U. Mustafaev, V. S. Sykhomlinov, M. A. Ainov, “Ion velocity distribution function in intrinsic gas plasma under conditions when the main process is resonance recharging. Experiment”, TVT, 55:3 (2017), 359–365 ; High Temperature, 55:3 (2017), 346–351 |
10
|
|
2016 |
| 18. |
V. S. Sykhomlinov, A. S.-U. Mustafaev, “Evolution of a vortex in gas-discharge plasma with allowance for gas compressibility”, Zhurnal Tekhnicheskoi Fiziki, 86:9 (2016), 48–55 ; Tech. Phys., 61:9 (2016), 1328–1336 |
1
|
|
2015 |
| 19. |
A. S. Mustafaev, V. S. Sykhomlinov, M. A. Ainov, “Experimental and theoretical determination of the strongly anisotropic velocity distribution functions of ions in the intrinsic gas plasma in strong fields”, Zhurnal Tekhnicheskoi Fiziki, 85:12 (2015), 45–55 ; Tech. Phys., 60:12 (2015), 1778–1789 |
21
|
| 20. |
V. S. Sykhomlinov, “Subsonic flow about a thin profile subjected to external actions”, Zhurnal Tekhnicheskoi Fiziki, 85:12 (2015), 33–39 ; Tech. Phys., 60:12 (2015), 1765–1771 |
|
2012 |
| 21. |
N. A. Gerasimov, A. V. Kanygin, V. S. Sykhomlinov, “Dispersion of acoustic waves in the plasma of a self-sustained gas discharge”, Zhurnal Tekhnicheskoi Fiziki, 82:1 (2012), 90–95 ; Tech. Phys., 57:1 (2012), 88–94 |
6
|
| 22. |
N. A. Gerasimov, A. V. Kanygin, V. S. Sykhomlinov, “Propagation of acoustic waves in a medium with the Rayleigh energy release mechanism”, Zhurnal Tekhnicheskoi Fiziki, 82:1 (2012), 86–89 ; Tech. Phys., 57:1 (2012), 83–87 |
|
1987 |
| 23. |
A. G. Zhiglinskiĭ, A. M. Izmailov, V. V. Kuchinskiy, V. S. Sykhomlinov, “DETERIORATION OF ISOTROPY OF ATOM MOBILITY NEAR THE SURFACE AND
DETERMINATION OF COEFFICIENT OF METAL ATOM CONDENSATION IN PLASMA”, Zhurnal Tekhnicheskoi Fiziki, 57:9 (1987), 1741–1745 |
|
1985 |
| 24. |
V. V. Kuchinskiy, E. G. Sheikin, V. S. Sykhomlinov, “CALCULATION OF THE ENERGETIC SPECTRUM OF ION FLOW IN THE DARK CATHODE
FIELD OF THE GLOW-DISCHARGE”, Zhurnal Tekhnicheskoi Fiziki, 55:1 (1985), 67–72 |
|
1984 |
| 25. |
V. A. Ivanov, V. S. Sykhomlinov, “OSCILLATING RELAXATION OF HIGH-EXCITED NE2+ IONS IN LOW-IONIZED PLASMA”, Zhurnal Tekhnicheskoi Fiziki, 54:10 (1984), 1903–1909 |
|
| Organisations |
|
|