|
|
Publications in Math-Net.Ru |
Citations |
|
2023 |
1. |
V. G. Niz'ev, “Physical method and optical elements for improving radiation quality of wide-aperture lasers”, Kvantovaya Elektronika, 53:4 (2023), 353–362 [Bull. Lebedev Physics Institute, 50:suppl. 8 (2023), S953–S965] |
|
2021 |
2. |
V. G. Niziev, A. Nesterov-Müller, “Divergence features of laser beams with angular momentum”, Kvantovaya Elektronika, 51:12 (2021), 1122–1126 [Quantum Electron., 51:12 (2021), 1122–1126 ] |
|
2018 |
3. |
V. G. Niziev, M. D. Khomenko, F. Kh. Mirzade, “Process planning and optimisation of laser cladding considering hydrodynamics and heat dissipation geometry of parts”, Kvantovaya Elektronika, 48:8 (2018), 743–748 [Quantum Electron., 48:8 (2018), 743–748 ] |
8
|
|
2015 |
4. |
L. V. Koval'chuk, A. N. Grezev, V. G. Niz'ev, V. P. Yakunin, V. S. Mezhevov, D. A. Goryachkin, V. V. Sergeev, A. G. Kalintsev, “Repetitively pulsed TEA CO<sub>2</sub> laser and its application for second harmonic generation in ZnGeP<sub>2</sub> crystal”, Kvantovaya Elektronika, 45:10 (2015), 884–890 [Quantum Electron., 45:10 (2015), 884–890 ] |
4
|
|
2014 |
5. |
V. G. Niziev, F. Kh. Mirzade, M. D. Khomenko, “Effect of powder characteristics on the balance of radiation energy in coaxial laser sintering”, Kvantovaya Elektronika, 44:9 (2014), 885–890 [Quantum Electron., 44:9 (2014), 885–890 ] |
2
|
|
2011 |
6. |
V. G. Niziev, F. Kh. Mirzade, V. Ya. Panchenko, V. M. Chechetkin, G. V. Ustyugova, “The heat and mass transfer under laser sintering of powder mixture”, Matem. Mod., 23:8 (2011), 75–88 ; Math. Models Comput. Simul., 4:2 (2012), 163–171 |
3
|
7. |
V. G. Niziev, A. V. Koldoba, F. Kh. Mirzade, V. Ya. Panchenko, Yu. A. Poveschenko, M. V. Popov, “Numerical modeling of laser sintering of two-component powder mixtures”, Matem. Mod., 23:4 (2011), 90–102 ; Math. Models Comput. Simul., 3:6 (2011), 723–731 |
10
|
|
2009 |
8. |
V. G. Niziev, V. P. Yakunin, N. G. Turkin, “Generation of polarisation-nonuniform modes in a high-power $\rm{CO}_2$ laser”, Kvantovaya Elektronika, 39:6 (2009), 505–514 [Quantum Electron., 39:6 (2009), 505–514 ] |
17
|
|
2004 |
9. |
A. V. Bezverbny, V. G. Niziev, A. M. Tumaikin, “Dipole traps for neutral atoms formed by nonuniformly polarised Laguerre modes”, Kvantovaya Elektronika, 34:7 (2004), 685–689 [Quantum Electron., 34:7 (2004), 685–689 ] |
10
|
|
2002 |
10. |
V. G. Niziev, “Dipole-wave theory of electromagnetic diffraction”, UFN, 172:5 (2002), 601–607 ; Phys. Usp., 45:5 (2002), 553–559 |
12
|
|
1990 |
11. |
G. A. Abil'siitov, A. I. Bondarenko, V. V. Vasil'tsov, V. S. Golubev, V. G. Gontar', A. M. Zabelin, V. G. Niziev, V. P. Yakunin, “Industrial lasers developed at the Scientific-Research Center for Industrial Lasers of the USSR Academy of Sciences”, Kvantovaya Elektronika, 17:6 (1990), 672–677 [Sov J Quantum Electron, 20:6 (1990), 594–598 ] |
2
|
|
1984 |
12. |
G. G. Gladush, E. B. Levchenko, V. G. Niziev, R. D. Seidgazov, “Mechanism of damage to polymers by pulse-periodic CO<sub>2</sub> laser radiation”, Kvantovaya Elektronika, 11:11 (1984), 2294–2300 [Sov J Quantum Electron, 14:11 (1984), 1522–1526 ] |
1
|
|
1979 |
13. |
V. Yu. Baranov, E. P. Velikhov, Yu. R. Kolomiiskii, V. S. Letokhov, V. G. Niziev, V. D. Pis'mennyi, E. A. Ryabov, “Isotope separation by multiphoton dissociation of molecules with high-power CO<sub>2</sub> laser radiation. IV. Enrichment with <sup>33</sup>S by irradiation of cooled SF<sub>6</sub> gas”, Kvantovaya Elektronika, 6:5 (1979), 1062–1069 [Sov J Quantum Electron, 9:5 (1979), 621–625] |
14
|
14. |
V. Yu. Baranov, E. P. Velikhov, S. A. Kazakov, D. D. Malyuta, V. S. Mezhevov, V. G. Niziev, S. V. Pigulskii, V. D. Pis'mennyi, A. I. Starodubtsev, “Isotope separation by multiphoton dissociation of molecules with high-power CO<sub>2</sub> laser radiation. II. Pulse-periodic CO<sub>2</sub> lasers”, Kvantovaya Elektronika, 6:4 (1979), 811–822 [Sov J Quantum Electron, 9:4 (1979), 480–486] |
5
|
15. |
V. Yu. Baranov, B. Ya. Lyubimov, V. G. Niziev, S. V. Pigulskii, “Gasdynamic perturbations of the gas stream in pulseperiodic CO<sub><b>2</b></sub> lasers. II. Acoustic waves”, Kvantovaya Elektronika, 6:1 (1979), 184–188 [Sov J Quantum Electron, 9:1 (1979), 101–104] |
3
|
16. |
V. Yu. Baranov, V. G. Niziev, S. V. Pigulskii, “Gasdynamic perturbations of the gas stream in pulseperiodic CO<sub>2</sub> lasers. I. Convective removal of the heated gas from the discharge region”, Kvantovaya Elektronika, 6:1 (1979), 177–183 [Sov J Quantum Electron, 9:1 (1979), 97–101] |
1
|
|
1977 |
17. |
V. Yu. Baranov, V. V. Breev, D. D. Malyuta, V. G. Niziev, “Limits on pulse repetition frequency in periodically operated CO<sub>2</sub> lasers”, Kvantovaya Elektronika, 4:9 (1977), 1861–1866 [Sov J Quantum Electron, 7:9 (1977), 1059–1062] |
8
|
18. |
V. Yu. Baranov, G. M. Klepach, D. D. Malyuta, V. S. Mezhevov, V. G. Niziev, S. F. Chalkin, “High-repetition-rate pulsed $\rm CO_2$ laser”, TVT, 15:5 (1977), 972–976 ; High Temperature, 15:5 (1977), 824–828 |
1
|
|
1972 |
19. |
V. Yu. Baranov, A. A. Vedenov, V. G. Niziev, “Разряд в потоке газа”, TVT, 10:6 (1972), 1156–1159 |
1
|
|
Organisations |
|
|
|
|