Investigation of a Glow Discharge with a Coaxial Hollow Cathode

Author:

Pogorelov Stanislav V.1ORCID,Krasovskyi Ihor V.1ORCID,Timaniuk Volodymyr A.1ORCID,Kokodii Nikolay G.2ORCID

Affiliation:

1. National University of Pharmacy, Kharkiv, Ukraine

2. V.N. Karazin Kharkiv National University, Kharkiv, Ukraine

Abstract

The article is devoted to the study of the operating modes of a glow discharge with a coaxial hollow cathode in helium and neon gases. It is shown that the burning voltage of a discharge with a coaxial hollow cathode is lower than one with a cylindrical hollow cathode of equal diameter, and the position of the optimal pressure range depends on the width of the annular gap of the cavity. It is noted that the rod current density is 3-5 times higher than the cylinder current density. The insignificant role of the photoelectric effect in the processes of electron emission from the cathode is proved. It is shown that the intensity of the atomic spectral lines of the cathode material increases significantly when a coaxial hollow cathode is used.

Publisher

V. N. Karazin Kharkiv National University

Subject

General Physics and Astronomy,General Materials Science

Reference9 articles.

1. A.S. Klimov, Yu.A. Burachevsky and I.S. Zhirkov, Proceedings of TUSUR University, 18(2), 53 (2008), https://journal.tusur.ru/storage/47466/53-58.pdf?1467799502. (in Russian)

2. B.I. Moskalev, Hollow cathode discharge, (Energiya, Moscow, 1969), pp. 184. (in Russian)

3. V.A. Timanyuk, N.G. Kokodiy, and F.G. Diaghileva, Papers SWORLD Transport, Engineering, Physics and Mathematics, 2(46), 95 (2017), https://www.sworld.com.ua/ntsw/117-2.pdf. (in Russian)

4. V. Lisovskiy, and I. Bogodielnyi, East European Journal of Physics, 1025(4), 43 (2012), https://periodicals.karazin.ua/eejp/article/view/13588

5. P.N. Chistyakov, in: Physical electronics: collection of articles, (Atomizdat, Moscow, 1966), pp. 3-19. (in Russian)

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