Mechanisms of plasma sustaining in large-volume hollow anode | Izvestiya vuzov. Fizika. 2020. № 10. DOI: 10.17223/00213411/63/10/117

Mechanisms of plasma sustaining in large-volume hollow anode

The results of investigation of low-pressure glow discharge with thehollow cathode and large-volume hollow anode are presented. Data on plasma potential, plasma density and electron temperature are obtained. Model which describes the mechanisms of plasma sustaining in hollow anode is proposed. The main idea of the model is that the hollow anode represents a potential trap for electrons and discharge current at the anode surface is carried not only by electrons, but also by ions. The estimations of the discharge parameters were done. Model agrees well with the experimental data.

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Authors

NameOrganizationE-mail
Landl N.V.Institute of High Current Electronics SB RASlandl@lnp.hcei.tsc.ru
Korolev Y.D.Institute of High Current Electronics SB RASkorolev@lnp.hcei.tsc.ru
Lopatin I.V.Institute of High Current Electronics SB RASlopatin@opee.hcei.tsc.ru
Krysina O.V.Institute of High Current Electronics SB RASmail:krysina_82@mail.ru
Frants O.B.Institute of High Current Electronics SB RASfrants@lnp.hcei.tsc.ru
Argunov G.A.Institute of High Current Electronics SB RASargunov.grigory@yandex.ru
Всего: 6

References

Korolev Y.D. and Koval N.N. // J. Phys. D: Appl. Phys. - 2018. - V. 51. - No. 32. - P. 323001.
Akishev Y.S., Karal’nik V.B., Petryakov A.V., et al. // Plasma Phys. Rep. - 2016. - V. 42. - No. 1. - P. 14.
Gavrilov N.V., Kamenetskikh A.S. // Rev. Sci. Instrum. - 2004. - V. 75. - P. 1875.
Dewald E., Frank K., Hoffman D.H.H., et al. // IEEE Trans. Plasma Sci. - 1997. - V. 25. - P. 272.
Yushkov G.Y. // Rev. Sci. Instrum. - 2004. - V. 75. - P. 1582.
Bergmann K., Vieker J., and Wezyk A. // J. Appl. Phys. - 2016. - V. 120. - No. 14. - P. 143302.
Borisov V.M., Eltsov A.V., Ivanov A.S., et al. // J. Phys. D: Appl. Phys. - 2004. - V. 37. - P. 3254.
Rosier O., Apetz R., Bergmann K., et al. // IEEE Trans. Plasma Sci. - 2004. - V. 32. - P. 240.
Lamba R.P., Pathania V., Meena B.L., et al. // Rev. Sci. Instrum. - 2015. - V. 86. - No. 10. - P. 103508.
Yan J.Q., Shen S.K., Wang Y.A., et al. // Rev. Sci. Instrum. - 2018. - V. 89. - No. 6. - P. 065102.
Korolev Y.D. and Frank K. // IEEE Trans. Plasma Sci. -1999. - V. 27. - P. 1525.
Zhang J. and Liu X. // IEEE Trans. Dielectr. Electr. Insul. - 2017. - V. 24. - No. 4. - P. 2050-2055.
Korolev Y.D., Landl N.V., Geyman V.G., et al. // Phys. Plasmas. - 2018. - V. 25. - No. 11. - P. 113510.
Ландль Н.В., Королев Ю.Д., Гейман В.Г., Франц О.Б. // Изв. вузов. Физика. - 2017. - Т. 60. - № 8. - С. 13-20.
Ландль Н.В., Королев Ю.Д., Гейман В.Г. и др. // Изв. вузов. Физика. - 2017. - Т. 60. - № 8. - С. 5-12.
Korolev Y.D., Landl N.V., Geyman V.G., et al. // IEEE Trans. Plasma Sci. - 2015. - V. 43. - No. 8. - P. 2349-2353.
Korolev Y.D., Landl N.V., Geyman V.G., et al. // Plasma Phys. Rep. - 2018. - V. 44. - No. 1. - P. 110-117.
Kondrat’eva N.P., Koval N.N., Korolev Y.D., and Schanin P.M. // J. Phys. D: Appl. Phys. - 1999. - V. 32. - P. 699.
Иванов Ю.Ф., Лопатин И.В., Петрикова Е.А. и др. // Изв. вузов. Физика. - 2019. - Т. 62. - № 11. - С. 137-142.
Lopatin I.V., Akhmadeev Y.H., and Koval N.N. // Rev. Sci. Instrum. - 2015. - V. 86. - P. 103301.
Koval N.N., Ivanov Y.F., Lopatin I.V., et al. // Russ. J. General Chem. - 2015. - V. 85. - P. 1326.
Koval N.N., Ryabchikov A.I., Sivin D.O., et al. // Surf. Coat. Technol. - 2018. - V. 340. - P. 152.
Akhmadeev Y.H., Denisov V.V., Koval N.N., et al. // Plasma Phys. Rep. - 2017. - V. 43. - No. 1. - P. 67.
Девятков В.Н., Коваль Н.Н. // Изв. вузов. Физика. - 2017. - Т. 60. - № 9. - С. 44-48.
Krysina O.V., Koval N.N., Lopatin I.V., et al. // J. Phys.: Conf. Ser. - 2016. - V. 669. - P. 012032.
Kozyrev A.V., Korolev Y.D., Rabotkin V.G., and Shemyakin I.A. // J. Appl. Phys. - 1993. - V. 74. - No. 9. - P. 5366-5371.
Ландль Н.В., Королев Ю.Д., Гейман В.Г. и др. // Изв. вузов. Физика. - 2019. - Т. 62. - № 12. - С. 59-67.
Korolev Y.D., Frants O.B., Landl N.V., et al. // IEEE Trans. Plasma Sci. - 2013. - V. 41. - No. 8. - P. 2087.
Korolev Y.D., Landl N.V., Geyman V.G., et al. // Plasma Phys. Rep. - 2016. - V. 42. - No. 8. - P. 799-807.
 Mechanisms of plasma sustaining in large-volume hollow anode | Izvestiya vuzov. Fizika. 2020. № 10. DOI: 10.17223/00213411/63/10/117

Mechanisms of plasma sustaining in large-volume hollow anode | Izvestiya vuzov. Fizika. 2020. № 10. DOI: 10.17223/00213411/63/10/117