Zobrazeno 1 - 10
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pro vyhledávání: '"V. I. Volosov"'
Autor:
V. I. Volosov
Publikováno v:
Plasma Physics Reports. 35:719-733
The paper presents a review of theoretical and experimental studies of plasma stability in systems with a rotating plasma (devices with crossed E×B fields) carried out in 1975–1985 at the Institute of Nuclear Physics, Siberian Branch of the Russia
Autor:
V. I. Volosov
Publikováno v:
Nuclear Fusion. 46:820-828
A physical design of a device that can be a base for a direct-conversion nuclear electric power station is considered. The project considers the aneutronic reaction P–11B in the asymmetric centrifugal trap. Kinetic energy of nuclear particles (alph
Publikováno v:
Plasma Physics Reports. 28:559-564
A study is made of some characteristic features of ion cyclotron resonance (ICR) heating in plasma-based isotope separators. The effects associated with ion drift in the RF field of a solenoidal antenna are considered in the single-particle approxima
Publikováno v:
IEEE Transactions on Appiled Superconductivity. 12:955-958
The magnetic system of the installation for plasma separation process (IPSP) by ion cyclotron resonance (ICR) heating method is presented. The requirements on the spatial uniformity and time stability of the magnetic field are realized by the high pr
Autor:
V. I. Volosov
Publikováno v:
Fusion Science and Technology. 47:351-353
Physical principles of recuperation (return) of charged particle energy in traps with rotating plasma are discussed. A specificity of these systems is that normally ion injection occurs due to ionization of neutral atoms in a volume with crossed fiel
Publikováno v:
Review of Scientific Instruments. 69:822-824
The metal ion source based on the magnetic trap with crossed fields (radial electrical and axial magnetic) is considered. This source formes plasma flow with magnetized heavy (metal) ions flowing along the longitudinal magnetic field. The self-suppor
Publikováno v:
Review of Scientific Instruments. 69:856-858
Source of accelerated atoms based on the trap with crossed fields (radial electrical and axial magnetic) is considered. Source produces simultaneously intensive (up to 20–50 mA/cm2) fluxes of accelerated (1–10 keV) atoms and slow (up to 100 eV) a
Autor:
N. S. Buchel’nikova, R. A. Kovrazhkin, A. K. Richter, B. V. Chirikov, V. I. Talanov, A. G. Litvak, V. N. Budnikov, V. I. Volosov, G. M. Fraiman, A. B. Shvartsburg, I. G. Granberg, I. V. Karas, V. M. Balebanov, V. I. Moroz, A. B. Mikhailovskii, E. A. Kuznetsov, N. P. Laverov, O. G. Chkhetiani, I. N. Meshkov, V. S. Tsypin, V. A. Buts, A. M. Egorov, J. G. Lominadze, L. M. Zelenyi, A. V. Gaponov-Grekhov, M. Bornatici, A. V. Nikolaev, H. Kikuchi, A. S. Kingsep, D. Schertzer, G. I. Dimov, R. Z. Sagdeev, V. E. Zakharov, K. N. Stepanov, E. N. Pelinovskii, A. A. Vodyanitskii, V. I. Muratov, A. D. Piliya, A. A. Rukhadze, G. M. Zaslavskii, E. D. Volkov, V. V. Zheleznyakov, I. N. Onishchenko, M. A. Miller, V. D. Shapiro, B. Alterkop, A. D. Pataraya, V. D. Shafranov, O. S. Pavlichenko, G. S. Golitsyn, A. N. Skrinskii, V. B. Gil’denburg, U. Frish, A. I. Morozov, V. I. Karas, E. Ya. Kogan, V. E. Golant, V. Krasnosel’skikh, V. N. Oraevskii, A. A. Galeev, R. A. Syunyaev, É. P. Kruglyakov, N. S. Erokhin, D. D. Ryutov, L. A. Nazarenko, V. I. Lapshin, I. V. Pryanikov, G. Z. Machabeli, G. Vekshtein, V. P. Silin, M. I. Petelin, A. M. Dykhne, V. Yu. Trakhtengerts, S. I. Kononenko, V. M. Kontorovich, S. N. Gordienko, Ya. B. Fainberg, E. Z. Gusakov, A. M. Fridman, M. B. Gokhberg
Publikováno v:
Plasma Physics Reports. 28:972-973
Publikováno v:
Soviet Physics Journal. 27:1017-1021
A method is considered for the reduction of the secondary emission coefficient by placing the collector surface at a small angle to a magnetic field. Experimentally, the secondary emission coefficient for stainless steel was reduced to 0.2 in the ene
Autor:
V. I. Volosov, S. P. Bogdanov
Publikováno v:
Recent Advances in Plasma Diagnostics / Diagnostika Plasmy / Диагностика Плазмы ISBN: 9781468475791
Methods employing the neutron radiation generated in nuclear reactions in the plasma are of great importance for the diagnosis of the ion component of a hot dd or dt plasma. These methods permit a rather accurate determination of the energy state of
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::df87e1d4c0cc036945404caaca2edd8e
https://doi.org/10.1007/978-1-4684-7577-7_1
https://doi.org/10.1007/978-1-4684-7577-7_1