[1]
A.S. Ananyev, O.I. Konkov, V.M. Lebedev, A.N. Novokhatskiy, E.I. Terukov, I.N. Trapeznikova, Preparation and properties of amorphous hydrogenated boron carbide, Semiconductors. 36, 8 (2002) 1006-1009 (in Russian).
DOI: 10.1134/1.1500477
Google Scholar
[2]
O.T. Danilova, Recycling of metal waste in high-frequency induction plasma discharge, Vestnik of SSU. 2 (2005) 168-173 (in Russian).
Google Scholar
[3]
V.F. Myshkin, D.A. Izhoykin, I.A. Ushakov, V.F. Shvetsov, Physical and Chemical Processes Research of Isotope Separation in Plasma under Magnetic Field, Adv. Mater. Res. 880 (2014) 128-133.
DOI: 10.4028/www.scientific.net/amr.880.128
Google Scholar
[4]
I.M. Ulanov, A. Yu. Litvintsev, Experimental study of the longitudinal magnetic field effect on the cathode parts of the glow discharge in helium, JTP. 74, 9 (2004) 32-38 (in Russian).
DOI: 10.1134/1.1800233
Google Scholar
[5]
N.A. Ashurbekov, K.O. Iminov, V.S. Kobzeva, G.M. Yusupova, Study of metastable states populations of helium atoms in the beam-plasma discharge with an extended hollow cathode, Adv. Appl. Phys. 1, 1 (2013) 53-59 (in Russian).
Google Scholar
[6]
R.Z. Shayhitdinov, V.M. Shibkov, The longitudinal magnetic field influence on the radial distribution of metastable xenon atoms in a pulsed discharge of He-Xe mixture, Vestnik of SSU. 2. (2005) 56-60 (in Russian).
Google Scholar
[7]
K.T. Taibov, The transverse magnetic field influence on the kinetics of short nanosecond discharge in the interelectrode gap in helium, Author's abstract on scientific degree of PhD, Makhachkala, 1998 (in Russian).
Google Scholar