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Publications in Math-Net.Ru |
Citations |
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2023 |
| 1. |
P. V. Bulat, K. N. Volkov, L. P. Grachev, I. I. Esakov, V. L. Bychkov, “Influence of an accelerated electron beam and external electric field on the combustion of a propane–air mixture in a subsonic air flow”, TVT, 61:6 (2023), 904–913 ; High Temperature, 61:6 (2023), 830–839 |
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2022 |
| 2. |
P. V. Bulat, K. N. Volkov, I. I. Esakov, P. B. Lavrov, A. A. Ravaev, “Electrodynamic model of combustion chamber using subcritical streamer discharge to ignite fuel mixture”, Zhurnal Tekhnicheskoi Fiziki, 92:5 (2022), 676–684 |
| 3. |
P. V. Bulat, K. N. Volkov, L. P. Grachev, I. I. Esakov, P. B. Lavrov, “Decrease of the air breakdown threshold by the subcritical streamer discharge when the initiator is placed near the metal screen”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 48:6 (2022), 41–43 |
| 4. |
P. V. Bulat, K. N. Volkov, L. P. Grachev, I. I. Esakov, P. B. Lavrov, “Ignition of a fuel mixture with a spark and initiated streamer discharge under various conditions”, TVT, 60:4 (2022), 548–556 ; High Temperature, 60:4 (2022), 497–504 |
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2021 |
| 5. |
V. L. Bychkov, L. P. Grachev, I. I. Esakov, A. V. Semenov, “Propagation of a single pressure wave over the discharge region of the microwave range of wavelengths in air at medium pressures”, Zhurnal Tekhnicheskoi Fiziki, 91:11 (2021), 1641–1644 |
| 6. |
P. V. Bulat, K. N. Volkov, L. P. Grachev, I. I. Esakov, P. B. Lavrov, “Ignition of a fuel mixture using a multipoint pulsed spark discharge under various initial conditions”, Zhurnal Tekhnicheskoi Fiziki, 91:9 (2021), 1339–1347 ; Tech. Phys., 66:11 (2021), 1177–1185 |
3
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| 7. |
P. V. Bulat, K. N. Volkov, L. P. Grachev, I. I. Esakov, P. B. Lavrov, N. Prodan, P. S. Chernyshov, “Comparison of the energy efficiency of ignition of a fuel mixture by spark and streamer discharges”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 47:15 (2021), 51–54 ; Tech. Phys. Lett., 47:10 (2021), 749–752 |
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2020 |
| 8. |
V. L. Bychkov, L. P. Grachev, I. I. Esakov, A. V. Semenov, “Base drag reduction and generation of the lifting force using a microwave discharge in a supersonic flow”, Zhurnal Tekhnicheskoi Fiziki, 90:8 (2020), 1283–1288 ; Tech. Phys., 65:8 (2020), 1233–1238 |
| 9. |
P. V. Bulat, L. P. Grachev, I. I. Esakov, A. A. Ravaev, L. G. Severinov, “Erratum to: Combustion Dynamics of a Propane–Air Gas Mixture When it is Ignited by a Streamer Microwave Discharge”, Tech. Phys., 65:1 (2020), 161 |
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2019 |
| 10. |
P. V. Bulat, L. P. Grachev, I. I. Esakov, A. A. Ravaev, L. G. Severinov, “Combustion dynamics of a propane–air gas mixture when it is ignited by a streamer microwave discharge”, Zhurnal Tekhnicheskoi Fiziki, 89:10 (2019), 1529–1534 ; Tech. Phys., 64:10 (2019), 1446–1451 |
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| 11. |
P. V. Bulat, L. P. Grachev, I. I. Esakov, A. A. Ravaev, L. G. Severinov, “Microwave air breakdown initiated by the electromagnetic vibrator placed on a dielectric surface”, Zhurnal Tekhnicheskoi Fiziki, 89:7 (2019), 1016–1020 ; Tech. Phys., 64:7 (2019), 957–961 |
3
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| 12. |
P. V. Bulat, L. P. Grachev, I. I. Esakov, A. A. Ravaev, “Threshold field that separates domains of subcritical and deeply subcritical microwave discharges ignited on a dielectric surface”, Zhurnal Tekhnicheskoi Fiziki, 89:1 (2019), 64–68 ; Tech. Phys., 64:1 (2019), 56–60 |
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2018 |
| 13. |
K. V. Aleksandrov, N. I. Busleev, L. P. Grachev, I. I. Esakov, A. A. Ravaev, “Gas electric discharge with a developed streamer structure in a quasi-optical microwave beam”, Zhurnal Tekhnicheskoi Fiziki, 88:10 (2018), 1515–1519 ; Tech. Phys., 63:10 (2018), 1468–1472 |
1
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| 14. |
L. P. Grachev, I. I. Esakov, A. A. Ravaev, L. G. Severinov, “Initiation of gas electrical breakdown in the field of a microwave traveling over the metal surface”, Zhurnal Tekhnicheskoi Fiziki, 88:7 (2018), 1000–1003 ; Tech. Phys., 63:7 (2018), 970–973 |
| 15. |
K. V. Aleksandrov, N. I. Busleev, L. P. Grachev, I. I. Esakov, A. A. Ravaev, “Multipoint ignition of a gas mixture by a microwave subcritical discharge with an extended streamer structure”, Zhurnal Tekhnicheskoi Fiziki, 88:2 (2018), 174–179 ; Tech. Phys., 63:2 (2018), 167–171 |
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2017 |
| 16. |
N. I. Busleev, V. L. Bychkov, L. P. Grachev, I. I. Esakov, A. A. Ravaev, “Detachment of electrons from atmospheric oxygen molecules in a high electric field”, Zhurnal Tekhnicheskoi Fiziki, 87:9 (2017), 1322–1326 ; Tech. Phys., 62:9 (2017), 1332–1336 |
1
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| 17. |
K. V. Aleksandrov, L. P. Grachev, I. I. Esakov, A. A. Ravaev, L. G. Severinov, “Effective area of energy interactions between the plasma of a deeply subcritical microwave discharge and its initiating electromagnetic field”, Zhurnal Tekhnicheskoi Fiziki, 87:5 (2017), 696–699 ; Tech. Phys., 62:5 (2017), 716–719 |
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2016 |
| 18. |
K. V. Aleksandrov, L. P. Grachev, I. I. Esakov, A. A. Ravaev, L. G. Severinov, A. Yu. Yakovlev, “Electric discharge in air in a deeply subcritical field of a quasi-optical microwave beam”, Zhurnal Tekhnicheskoi Fiziki, 86:4 (2016), 28–33 ; Tech. Phys., 61:4 (2016), 505–510 |
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2014 |
| 19. |
K. V. Aleksandrov, L. P. Grachev, I. I. Esakov, L. G. Severinov, “An electromagnetic vibrator fixed on a screen initiates gas breakdown in the subcritical field of a microwave beam”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 40:6 (2014), 89–94 ; Tech. Phys. Lett., 40:3 (2014), 274–276 |
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2012 |
| 20. |
K. V. Aleksandrov, I. I. Esakov, P. B. Lavrov, A. A. Ravaev, K. V. Khodataev, “Regular set of gas discharges on the surface of a dielectric in a quasi-optical microwave beam”, Zhurnal Tekhnicheskoi Fiziki, 82:8 (2012), 55–61 ; Tech. Phys., 57:8 (2012), 1095–1100 |
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| 21. |
L. P. Grachev, I. I. Esakov, P. B. Lavrov, A. A. Ravaev, “Induced field of an electromagnetic vibrator above a conducting screen placed in a microwave beam”, Zhurnal Tekhnicheskoi Fiziki, 82:2 (2012), 73–78 ; Tech. Phys., 57:2 (2012), 230–235 |
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2011 |
| 22. |
K. V. Aleksandrov, A. A. Volkov, L. P. Grachev, I. I. Esakov, L. G. Severinov, “Electromagnetic vibrator: An initiator of air breakdown in the subcritical field of a quasi-optical microwave beam”, Zhurnal Tekhnicheskoi Fiziki, 81:3 (2011), 35–39 ; Tech. Phys., 56:3 (2011), 351–355 |
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2009 |
| 23. |
D. V. Bychkov, L. P. Grachev, I. I. Esakov, A. A. Ravaev, L. G. Severinov, “Electrical discharge excited by the deeply undercritical field of a microwave beam in a high-speed jet of air and air-propane mixture”, Zhurnal Tekhnicheskoi Fiziki, 79:9 (2009), 33–40 ; Tech. Phys., 54:9 (2009), 1276–1283 |
2
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| 24. |
D. V. Bychkov, L. P. Grachev, I. I. Esakov, “Deeply undercritical microwave discharge excited by the field of a quasi-optical electromagnetic beam in a supersonic air jet”, Zhurnal Tekhnicheskoi Fiziki, 79:3 (2009), 39–45 ; Tech. Phys., 54:3 (2009), 365–371 |
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2008 |
| 25. |
K. V. Aleksandrov, D. V. Bychkov, L. P. Grachev, I. I. Esakov, “Ionization-overheating instability threshold in the electrodeless microwave discharge plasma”, Zhurnal Tekhnicheskoi Fiziki, 78:7 (2008), 35–39 ; Tech. Phys., 53:7 (2008), 853–857 |
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2007 |
| 26. |
K. V. Aleksandrov, L. P. Grachev, I. I. Esakov, “Microwave breakdown of air initiated by a short electromagnetic vibrator”, Zhurnal Tekhnicheskoi Fiziki, 77:12 (2007), 26–30 ; Tech. Phys., 52:12 (2007), 1557–1561 |
10
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| 27. |
V. L. Bychkov, L. P. Grachev, I. I. Esakov, “Thermal ionization instability of an air discharge plasma in a microwave field”, Zhurnal Tekhnicheskoi Fiziki, 77:3 (2007), 1–6 ; Tech. Phys., 52:3 (2007), 289–295 |
5
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2006 |
| 28. |
K. V. Aleksandrov, L. P. Grachev, I. I. Esakov, V. V. Fedorov, K. V. Khodataev, “Domains of existence of various types of microwave discharge in quasi-optical electromagnetic beams”, Zhurnal Tekhnicheskoi Fiziki, 76:11 (2006), 52–60 ; Tech. Phys., 51:11 (2006), 1448–1456 |
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| 29. |
A. F. Aleksandrov, V. L. Bychkov, L. P. Grachev, I. I. Esakov, A. Yu. Lomteva, “Air ionization in a near-critical electric field”, Zhurnal Tekhnicheskoi Fiziki, 76:3 (2006), 38–43 ; Tech. Phys., 51:3 (2006), 330–335 |
15
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2004 |
| 30. |
V. L. Bychkov, L. P. Grachev, I. I. Esakov, A. A. Ravaev, K. V. Khodataev, “Longitudinal DC electric discharge in a supersonic air flow”, Zhurnal Tekhnicheskoi Fiziki, 74:7 (2004), 27–32 ; Tech. Phys., 49:7 (2004), 833–838 |
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1985 |
| 31. |
G. I. Mishin, L. P. Grachev, I. I. Esakov, M. Yu. Nikitin, K. V. Khodataev, “INTERACTION OF SHOCK-WAVES WITH THE DECAYING PLASMA OF NONELECTRODE UHF
DISCHARGES”, Zhurnal Tekhnicheskoi Fiziki, 55:5 (1985), 972–975 |
| 32. |
G. I. Mishin, L. P. Grachev, I. I. Esakov, M. Yu. Nikitin, K. V. Khodataev, “NON-ELECTRODE DISCHARGE IN THE AIR AT MEDIUM PRESSURES”, Zhurnal Tekhnicheskoi Fiziki, 55:2 (1985), 389–391 |
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1984 |
| 33. |
L. P. Grachev, I. I. Esakov, M. P. Knyazev, G. I. Mishin, B. A. Sharai, “PROBABILITY OF PULSED ELECTRODELESS UHF OF ATMOSPHERIC BREAKDOWN IN
NON-HOMOGENEOUS FIELDS AT NATURAL LEVELS OF INITIAL IONIZATION”, Zhurnal Tekhnicheskoi Fiziki, 54:7 (1984), 1353–1355 |
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