RAS PhysicsФизика плазмы Plasma Physics Reports

  • ISSN (Print) 0367-2921
  • ISSN (Online) 3034-6371

X-RAY RADIATION OF LONG SPARK DISCHARGES IN A LABORATORY EXPERIMENT

PII
S30346371S0367292125020104-1
DOI
10.7868/S3034637125020104
Publication type
Article
Status
Published
Authors
Volume/ Edition
Volume 51 / Issue number 2
Pages
235-246
Abstract
X-ray photons (with an energy of more than 10 keV) have been detected using photometers-spectrometers developed at the Skobeltsyn Institute of Nuclear Physics, Moscow State University, similar to those used to detect X-rays from high-altitude discharges in orbital experiments, during the laboratory simulation using the Marx GROZA GIN-1MV generator installed at the Institute of Applied Physics, Russian Academy of Sciences. Several cases of the appearance of X-ray photons with an energy of 20 to 160 keV have been detected, including those simultaneously in several detectors. Indications are received that it was possible to detect real X-ray photons during the laboratory experiments on the simulation of lightning discharges, which corresponds to the predictions of theoretical models and data of orbital and ground-based observations.
Keywords
электрические разряды лабораторное моделирование рентгеновское и гамма-излучение длинные искры
Date of publication
07.02.2025
Year of publication
2025
Number of purchasers
0
Views
25

References

  1. 1. Dwyer J.R., Uman M.A. // Phys. Rep. 2014. V. 534. P. 147.
  2. 2. Ihaddadene M.A., Celestin S. // Geophys. Res. Lett. 2015. V. 42. P. 5644.
  3. 3. Østgaard N., Carlson B.E., Nisi R.S., Gjesteland T., Grøndahl Ø., Skeltved A., Lehtinen N.G., Mezentsev A., Marisaldi M., Kochkin P. // J. Geophys. Res.: Atmos. 2016. V. 121. P. 2939–2954.
  4. 4. Wada Y., Enoto T., Nakazawa K., Furuta Y., Yuasa T., Nakamura Y., Morimoto T., Matsumoto T., Makishima K., Tsuchiya H. // Phys. Rev. Lett. 2019. V. 123. P. 061103.
  5. 5. Shi F., Liu N., Dwyer J.R., Ihaddadene K.M.A. // Geophys. Res. Lett. 2019. V. 46. P. 443.
  6. 6. Koile J., Liu N., Dwyer J. // Geophys. Res. Lett. 2021. V. 48. P. e2021GL096214.
  7. 7. Kochkin P., van Deursen A., Ebert U. // J. Phys. D: Appl. Phys. 2012. V. 45. P. 425202. https://doi.org/10.1088/0022-3727/45/42/425202
  8. 8. Kochkin P., van Deursen A., Ebert U. // J. Phys. D: Appl. Phys. 2014. V. 47. P.145203. https://doi.org/10.1088/0022-3727/47/14/145203
  9. 9. Parkevich E.V., Shpakov K.V., Baidin I.S., Rodionov A.A., Khirianova A.I., Khirianov T.F., Bolotov Ya.K., Medvedev M.A., Ryabov V.A. et al. // Phys. Rev. E. 2022. V. 105. P. L053201.
  10. 10. Schonland B., Malan D., Collens H. // Proc. Roy. Soc. London. 1935. V. A152. P. 595.
  11. 11. Schonland B., Hoges D., Collens H. // Proc. Roy. Soc. London. 1938. V. A166. P. 56.
  12. 12. Стекольников И.С., Шкилев А.В. // ДАН СССР. 1963. Т. 151. C. 1085.
  13. 13. Александров Г.Н., Горин Б.Н., Редков В.В., Стекольников И.С., Шкилев А.В. // ДАН СССР. 1968. Т. 183. С. 1048
  14. 14. Горин Б.Н., Шкилев А.В. // Электричество. 1974. С. 29.
  15. 15. Positive discharges in long air gaps at Les Renardieres Group // Electra. 1977. № 53. P. 31.
  16. 16. Kostinskiy A.Y., Syssoev V.S., Bogatov N.A., Mareev E.A., Andreev M.G., Bulatov M.U., Sukharevsky D.I., Rakov V.A. // J. Geophys. Res. Atmos. 2018. V. 123. P. 5360.
  17. 17. Cooray V., Arevalo L., Rahman M., Dwyer D., Rassoul H. // J. Atmos. Sol. Terr. Phys. 2009. V. 71. P. 1890–8.
  18. 18. Родионов А.А., Агафонов А.В., Рябов В.А., Шпаков К.В., Байдин И.С., Болотов Я.К., Медведев М.А., Паркевич Е.В., Мозговой А.Г., Огинов А.В. // Письма ЖЭТФ. 2022. Т. 116. С. 225.
  19. 19. Parkevich E.V., Khirianova A.I., Khirianov T.F., Baidin I.S., Shpakov K.V., Tolbukhin D.V., Rodionov A.A., Bolotov Ya.K., Ryabov V.A., Ambrozevich S.A., Oginov A.V. // Phys. Rev. E. 2023. V. 108. 025201.
  20. 20. Parkevich E.V., Khirianova A.I., Khirianov T.F., Baidin I.S., Shpakov K.V., Rodionov A.A., Bolotov Ya.K., Ryabov V.A., Kurilenkov Yu.K., Samoylov I.S., Ambrozevich S.A., Oginov A.V. // Phys. Rev. E. 2022. V. 106. 045210.
  21. 21. Babich L., Bochkov E. // J. Phys. D. 2017. V. 50. P. 455202.
  22. 22. Ko¨hn C., Chanrion O., Neubert T. // Geophys. Res. Lett. 2017. V. 44. P. 2604.
  23. 23. Kochkin P.O., van Deursen A.P.J., Ebert U. // J. Phys. D: Appl. Phys. 2015. V. 48. P. 025205. https://doi.org/10.1088/0022-3727/48/2/025205
  24. 24. Nguyen C.V., van Deursen A.P.J., Elbert U.M. // J. Phys. D. 2008. V. 41. P. 234012.
  25. 25. Мареев Е.А., Шлюгаев Ю.В., Шаталина М.В., Сарафанов Ф.Г., Богомолов В.В., Июдин А.Ф., Свертилов С.И., Яшин И.В. // Астрономический журнал. 2023. Т. 100. С. 119. https://doi.org/10.1134/s1063772923010067
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