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Publications in Math-Net.Ru |
Citations |
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2019 |
1. |
A. G. Berezutskii, V. N. Tishchenko, Yu. P. Zakharov, I. B. Miroshnichenko, I. F. Shaikhislamov, “Generation of torsional Alfvén and slow magnetosonic waves by periodic bunches of laser plasma in a magnetised background”, Kvantovaya Elektronika, 49:2 (2019), 178–180 [Quantum Electron., 49:2 (2019), 178–180 ] |
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2017 |
2. |
G. N. Grachev, I. B. Miroshnichenko, A. L. Smirnov, P. A. Statsenko, V. N. Tishchenko, A. G. Berezutskii, “Localisation of intense sound produced by an optical pulsating discharge in the air”, Kvantovaya Elektronika, 47:10 (2017), 911–914 [Quantum Electron., 47:10 (2017), 911–914 ] |
3. |
V. N. Tishchenko, A. G. Berezutskii, È. L. Boyarintsev, Yu. P. Zakharov, A. V. Melekhov, I. B. Miroshnichenko, A. G. Ponomarenko, V. G. Posukh, I. F. Shaikhislamov, “Merging of the waves produced by optical breakdowns in rarefied plasma with a magnetic field. Laboratory modelling”, Kvantovaya Elektronika, 47:9 (2017), 849–852 [Quantum Electron., 47:9 (2017), 849–852 ] |
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2016 |
4. |
V. N. Tishchenko, Yu. P. Zakharov, I. F. Shaikhislamov, A. G. Berezutskii, E. L. Boyarintsev, A. V. Melekhov, A. G. Ponomarenko, V. G. Posukh, P. A. Prokopov, “Torsional Alfvén and slow magnetoacoustic waves generated by a plasma in a magnetic field”, Pis'ma v Zh. Èksper. Teoret. Fiz., 104:5 (2016), 303–305 ; JETP Letters, 104:5 (2016), 293–296 |
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5. |
Yu. P. Zakharov, A. G. Ponomarenko, V. N. Tishchenko, V. M. Antonov, A. V. Melekhov, V. G. Posukh, P. A. Prokopov, V. A. Terekhin, “Generation of laser plasma bunches with a high efficiency of energy concentration for laboratory simulation of collisionless shock waves in magnetised cosmic plasma”, Kvantovaya Elektronika, 46:5 (2016), 399–405 [Quantum Electron., 46:5 (2016), 399–405 ] |
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6. |
G. N. Grachev, A. K. Dmitriev, I. B. Miroshnichenko, A. L. Smirnov, V. N. Tishchenko, “Sound spectrum of a pulsating optical discharge”, Kvantovaya Elektronika, 46:2 (2016), 169–172 [Quantum Electron., 46:2 (2016), 169–172 ] |
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2014 |
7. |
V. N. Tishchenko, I. F. Shaikhislamov, “Wave merging mechanism: formation of low-frequency Alfven and magnetosonic waves in cosmic plasmas”, Kvantovaya Elektronika, 44:2 (2014), 98–101 [Quantum Electron., 44:2 (2014), 98–101 ] |
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2011 |
8. |
V. N. Tishchenko, V. G. Posukh, A. I. Gulidov, V. I. Zapryagaev, A. A. Pavlov, È. L. Boyarintsev, M. P. Golubev, I. N. Kavun, A. V. Melekhov, L. S. Golobokova, I. B. Miroshnichenko, A. A. Pavlov, A. S. Shmakov, “Criteria for formation of low-frequency sound under wide-aperture repetitively pulsed laser irradiation of solids”, Kvantovaya Elektronika, 41:10 (2011), 895–900 [Quantum Electron., 41:10 (2011), 895–900 ] |
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2010 |
9. |
V. N. Tishchenko, I. F. Shaikhislamov, “Mechanism for shock wave merging in magnetised plasma: criteria and efficiency of formation of low-frequency magnetosonic waves”, Kvantovaya Elektronika, 40:5 (2010), 464–469 [Quantum Electron., 40:5 (2010), 464–469 ] |
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2008 |
10. |
V. N. Tishchenko, G. N. Grachev, A. A. Pavlov, A. L. Smirnov, A. A. Pavlov, M. P. Golubev, “Gas-dynamic effects in the interaction of a motionless optical pulsating discharge with gas”, Kvantovaya Elektronika, 38:1 (2008), 82–87 [Quantum Electron., 38:1 (2008), 82–87 ] |
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2007 |
11. |
V. V. Apollonov, V. N. Tishchenko, “Laser air-jet engine: the action of shock waves at low laser pulse repetition rates”, Kvantovaya Elektronika, 37:8 (2007), 798–800 [Quantum Electron., 37:8 (2007), 798–800 ] |
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12. |
G. N. Grachev, V. N. Tishchenko, V. V. Apollonov, A. I. Gulidov, A. L. Smirnov, A. V. Sobolev, M. I. Zimin, “Stationary force produced by an optical pulsating discharge in a laser engine model”, Kvantovaya Elektronika, 37:7 (2007), 669–673 [Quantum Electron., 37:7 (2007), 669–673 ] |
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2006 |
13. |
V. V. Apollonov, V. N. Tishchenko, “Laser engine based on the resonance merging of shock waves”, Kvantovaya Elektronika, 36:7 (2006), 673–683 [Quantum Electron., 36:7 (2006), 673–683 ] |
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14. |
G. N. Grachev, A. G. Ponomarenko, V. N. Tishchenko, A. L. Smirnov, S. I. Trashkeev, P. A. Statsenko, M. I. Zimin, A. A. Myakushina, V. I. Zapryagaev, A. I. Gulidov, V. M. Boiko, A. A. Pavlov, A. V. Sobolev, “Merging of shock waves produced by a moving pulsating optical discharge”, Kvantovaya Elektronika, 36:5 (2006), 470–472 [Quantum Electron., 36:5 (2006), 470–472 ] |
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15. |
V. N. Tishchenko, I. F. Shaikhislamov, “Quasi-stationary magnetic and electric waves produced by a pulsed shock-wave source”, Kvantovaya Elektronika, 36:1 (2006), 56–60 [Quantum Electron., 36:1 (2006), 56–60 ] |
3
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2005 |
16. |
V. N. Tishchenko, “Doppler effect for an optical discharge source of shock waves”, Kvantovaya Elektronika, 35:11 (2005), 1015–1018 [Quantum Electron., 35:11 (2005), 1015–1018 ] |
17. |
G. N. Grachev, A. G. Ponomarenko, A. L. Smirnov, P. A. Statsenko, V. N. Tishchenko, S. I. Trashkeev, “A pulsating optical discharge moving in a gas”, Kvantovaya Elektronika, 35:11 (2005), 973–975 [Quantum Electron., 35:11 (2005), 973–975 ] |
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2004 |
18. |
V. V. Apollonov, V. N. Tishchenko, “Mechanism of shock wave merging in a laser jet engine”, Kvantovaya Elektronika, 34:12 (2004), 1143–1146 [Quantum Electron., 34:12 (2004), 1143–1146 ] |
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19. |
V. N. Tishchenko, V. V. Apollonov, G. N. Grachev, A. I. Gulidov, V. I. Zapryagaev, Ya. G. Men'shikov, A. L. Smirnov, A. V. Sobolev, “Interaction of an optical pulsed discharge with a gas: conditions for stable generation and merging of shock waves”, Kvantovaya Elektronika, 34:10 (2004), 941–947 [Quantum Electron., 34:10 (2004), 941–947 ] |
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2003 |
20. |
V. N. Tishchenko, “Generation of a low-frequency wave by an optical discharge moving in a gas at a subsonic speed”, Kvantovaya Elektronika, 33:9 (2003), 823–830 [Quantum Electron., 33:9 (2003), 823–830 ] |
9
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2002 |
21. |
V. N. Tishchenko, G. N. Grachev, V. I. Zapryagaev, A. L. Smirnov, A. V. Sobolev, “Spectrum of shock waves produced by an optical discharge at a high laser-pulse repetition rate”, Kvantovaya Elektronika, 32:4 (2002), 329–334 [Quantum Electron., 32:4 (2002), 329–334 ] |
8
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2001 |
22. |
V. N. Tishchenko, G. N. Grachev, A. I. Gulidov, V. I. Zapryagaev, V. G. Posukh, “Simulation of shock waves at high repetition rate of laser sparks”, Kvantovaya Elektronika, 31:4 (2001), 283–284 [Quantum Electron., 31:4 (2001), 283–284 ] |
1
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1996 |
23. |
P. K. Tret'yakov, A. F. Garanin, G. N. Grachev, V. L. Krainev, A. G. Ponomarenko, V. N. Tishchenko, V. I. Yakovlev, “Supersonic flow over bodies control by using a powerful optical pulsating discharge”, Dokl. Akad. Nauk, 351:3 (1996), 339–340 |
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1994 |
24. |
P. K. Tret'yakov, G. P. Grachev, A. I. Ivanchenko, V. L. Krainev, A. G. Ponomarenko, V. N. Tishchenko, “The stabilization of optical discharge in supersonic argon flow”, Dokl. Akad. Nauk, 336:4 (1994), 466–467 |
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1988 |
25. |
V. N. Tishchenko, “Kinetic coefficients for the active medium of a CO<sub>2</sub> laser pumped by an ac electric field”, Kvantovaya Elektronika, 15:12 (1988), 2497–2501 [Sov J Quantum Electron, 18:12 (1988), 1567–1570 ] |
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1987 |
26. |
A. G. Ponomarenko, V. N. Tishchenko, V. A. Schweigert, “Влияние межэлектронных соударений на функцию распределения электронов в азоте”, TVT, 25:4 (1987), 787–790 |
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1985 |
27. |
A. G. Ponomarenko, V. N. Tishchenko, “Optimal conditions for the formation of quasi-cw radiation pulses in a CO<sub>2</sub> amplifier”, Kvantovaya Elektronika, 12:6 (1985), 1179–1183 [Sov J Quantum Electron, 15:6 (1985), 780–783 ] |
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1980 |
28. |
A. G. Ponomarenko, V. N. Tishchenko, “Investigation of a $CO_2$ amplifier emitting microsecond pulses”, Kvantovaya Elektronika, 7:8 (1980), 1685–1693 [Sov J Quantum Electron, 10:8 (1980), 975–980 ] |
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1977 |
29. |
V. N. Tishchenko, “Optimum conditions for formation of short and long radiation pulses in CO$_2$ lasers”, Prikl. Mekh. Tekh. Fiz., 18:3 (1977), 9–15 ; J. Appl. Mech. Tech. Phys., 18:3 (1977), 288–292 |
30. |
A. G. Ponomarenko, V. N. Tishchenko, “Efficiency of CO<sub>2</sub> amplifiers”, Kvantovaya Elektronika, 4:5 (1977), 970–975 [Sov J Quantum Electron, 7:5 (1977), 544–547] |
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1975 |
31. |
A. G. Ponomarenko, R. I. Soloukhin, V. N. Tishchenko, “Optimization and limiting characteristics of CO$_2$ lasers”, Prikl. Mekh. Tekh. Fiz., 16:5 (1975), 120–131 ; J. Appl. Mech. Tech. Phys., 16:5 (1975), 774–782 |
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