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Published in: Technical Physics 5/2019

01-05-2019 | PLASMA

Structure of Magnetic Plasma Fluctuations in the Uragan-3M Torsatron at Rare Collision Frequencies

Authors: V. K. Pashnev, E. L. Sorokovoy, A. A. Petrushenya, F. I. Ozherel’ev

Published in: Technical Physics | Issue 5/2019

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Abstract

Fluctuations of the poloidal component of the plasma magnetic field in the frequency range of 0.5–50 kHz are studied in the Uragan-3M (U-3M) torsatron. Hydrogen plasma is produced and heated by RF fields at frequencies close to that of the ion cyclotron. The studies are carried out using a set of 15 magnetic sensors installed in one of the torus cross sections. RF heating provided the plasma with rare collision frequencies and the presence of the bootstrap current. The study is carried out when the maximum amplitude of magnetic fluctuations is observed and their connection with the plasma energy content is noticeable. Two types of vibrations are observed. In the first type, the current structure rotates with a certain frequency mainly in the direction of the rotation of electrons in the magnetic field, and the amplitude varies slowly with time (the rotating structure). For the second type, the spatial structure does not rotate, but its amplitude changes with a certain frequency (the standing structure). The frequencies of fluctuations and rotations are close for structures with a given poloidal wave number. The standing vibration structures with different poloidal wave numbers in this frequency range are correlated. The maximum amplitude of the rotating structures is observed with m = 2, and for the standing structures with m = 3 and reaches the values of \(\tilde {B}\) ≤ 0.3 G in the confinement region. The vibration frequency does not depend on poloidal wave number m for the studied cases; m = 0, 1, 2, 3.

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Literature
1.
go back to reference A. B. Mikhailovskii, Plasma Instabilities in Magnetic Confinement Systems (Atomizdat, Moscow, 1978). A. B. Mikhailovskii, Plasma Instabilities in Magnetic Confinement Systems (Atomizdat, Moscow, 1978).
4.
go back to reference W. W. Heidbrink, E. J. Strait, M. S. Chu, and A. D. Turnbull, Phys. Rev. Lett. 71, 855 (1993).CrossRefADS W. W. Heidbrink, E. J. Strait, M. S. Chu, and A. D. Turnbull, Phys. Rev. Lett. 71, 855 (1993).CrossRefADS
5.
go back to reference A. B. Mikhailovskii and S. E. Sharapov, Plasma Phys. Rep. 25, 803 (1999).ADS A. B. Mikhailovskii and S. E. Sharapov, Plasma Phys. Rep. 25, 803 (1999).ADS
8.
9.
10.
go back to reference V. V. Chechkin, L. I. Grigor’eva, R. O. Pavlichenko, A. Ye. Kulaga, N. V. Zamanov, V. E. Moiseenko, P. Ya. Burchenko, A. V. Lozin, S. A. Tsybenko, I. K. Tarasov, I. M. Pankratov, D. L. Grekov, A. A. Beletskii, A. A. Kasilov, V. S. Voitsenya, et al., Plasma Phys. Rep. 40, 601 (2014).CrossRefADS V. V. Chechkin, L. I. Grigor’eva, R. O. Pavlichenko, A. Ye. Kulaga, N. V. Zamanov, V. E. Moiseenko, P.  Ya.  Burchenko, A. V. Lozin, S. A. Tsybenko, I.   K.   Tarasov, I. M. Pankratov, D. L. Grekov, A. A. Beletskii, A. A. Kasilov, V. S. Voitsenya, et al., Plasma Phys. Rep. 40, 601 (2014).CrossRefADS
11.
go back to reference A. V. Longinov and K. N. Stepanov, in High-Frequency Plasma Heating, Ed. by A. G. Litvak (American Inst. of Physics, New York, 1992), pp. 93–238. A. V. Longinov and K. N. Stepanov, in High-Frequency Plasma Heating, Ed. by A. G. Litvak (American Inst. of Physics, New York, 1992), pp. 93–238.
12.
go back to reference V. K. Pashnev, I. K. Tarasov, D. A. Sitnikov, et al., Probl. At. Sci. Technol., No. 1, 15 (2013). V. K. Pashnev, I. K. Tarasov, D. A. Sitnikov, et al., Probl. At. Sci. Technol., No. 1, 15 (2013).
13.
go back to reference A. A. Kasilov, L. I. Grigor’eva, V. V. Chechkin, et al., Probl. Probl. At. Sci. Technol., No. 1, 24 (2015). A. A. Kasilov, L. I. Grigor’eva, V. V. Chechkin, et al., Probl. Probl. At. Sci. Technol., No. 1, 24 (2015).
14.
go back to reference V. K. Pashnev, E. L. Sorokovoy, A. A. Petrushenya, et al., Probl. At. Sci. Technol., No. 6, 24 (2010). V. K. Pashnev, E. L. Sorokovoy, A. A. Petrushenya, et al., Probl. At. Sci. Technol., No. 6, 24 (2010).
15.
go back to reference V. K. Pashnev and E. L. Sorokovoy, Probl. At. Sci. Technol., No. 6, 31 (2008). V. K. Pashnev and E. L. Sorokovoy, Probl. At. Sci. Technol., No. 6, 31 (2008).
16.
go back to reference V. V. Chechkin, L. I. Grigor’eva, Ye. L. Sorokovoy, E. L. Sorokovoy, A. A. Beletskii, A. S. Slavnyj, Yu. S. Lavrenovich, E. D. Volkov, P. Ya. Burchenko, S. A. Tsybenko, A. V. Lozin, A. Ye. Kulaga, N. V. Zamanov, D. V. Kurilo, Yu. K. Mironov, and V. S. Romanov, Plasma Phys. Rep. 35, 852 (2009).CrossRefADS V. V. Chechkin, L. I. Grigor’eva, Ye. L. Sorokovoy, E. L. Sorokovoy, A. A. Beletskii, A. S. Slavnyj, Yu. S. Lavrenovich, E. D. Volkov, P. Ya. Burchenko, S. A. Tsybenko, A. V. Lozin, A. Ye. Kulaga, N. V. Zamanov, D. V. Kurilo, Yu. K. Mironov, and V. S. Romanov, Plasma Phys. Rep. 35, 852 (2009).CrossRefADS
17.
go back to reference V. K. Pashnev, E. L. Sorokovoy, V. L. Berezhnyj, et al., Probl. At. Sci. Technol., No. 6, 17 (2010). V. K. Pashnev, E. L. Sorokovoy, V. L. Berezhnyj, et al., Probl. At. Sci. Technol., No. 6, 17 (2010).
18.
go back to reference A. I. Morozov and L. S. Solov’ev, in Plasma Theory Problems, Ed. by M. A. Leontovich (Atomizdat, Moscow, 1963), Vol. 2, pp. 51, 70. A. I. Morozov and L. S. Solov’ev, in Plasma Theory Problems, Ed. by M. A. Leontovich (Atomizdat, Moscow, 1963), Vol. 2, pp. 51, 70.
19.
go back to reference M. B. Dreval, Yu. V. Yakovenko, E. L. Sorokovoy, et al., Phys. Plasmas 23, 022506 (2016).CrossRefADS M. B. Dreval, Yu. V. Yakovenko, E. L. Sorokovoy, et al., Phys. Plasmas 23, 022506 (2016).CrossRefADS
Metadata
Title
Structure of Magnetic Plasma Fluctuations in the Uragan-3M Torsatron at Rare Collision Frequencies
Authors
V. K. Pashnev
E. L. Sorokovoy
A. A. Petrushenya
F. I. Ozherel’ev
Publication date
01-05-2019
Publisher
Pleiades Publishing
Published in
Technical Physics / Issue 5/2019
Print ISSN: 1063-7842
Electronic ISSN: 1090-6525
DOI
https://doi.org/10.1134/S1063784219050189

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