Propagation of Hydromagnetic Waves in Collisionless Plasma. I
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概要
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The propagation of hydromagnetic waves in collisionless plasma is investigated on the basis of the Chew-Goldberger-Low approximation. The dispersion relation for weak, plane disturbances in a uniform plasma is derived. It is found that there exist the fast and slow modes of magnetoacoustic waves as well as the Alfven wave. However, under certain conditions the phase velocities of the slow and the Alfven waves become imaginary: namely the system is not necessarily totally hyperbolic but can be partially elliptic. The conditions on the elliptic cases are investigated in detail, especially for the slow wave. Then the propagation of a wave diverging from a point source is investigated graphically as well as analytically. The general theory of steady flow is also given, and some discussions are done for the two dimensional aligned field-flow in which the directions of magnetic field and flow are aligned everywhere.
- 社団法人日本物理学会の論文
- 1966-04-05
著者
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KATO Yusuke
Department of Chemistry and Chemical Engineering, Niigata University
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Taniuti Tosiya
Research Information Center Institute Of Plasma Physics Nagoya University:department Of Physics Nago
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Kato Yusuke
Research Information Center Institute Of Plasma Physics Nagoya University:faculty Of Education Kobe
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TAJIRI Masayoshi
College of Engineering, University of Osaka Prefecture
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TANIUTI Tosiya
Institute of Plasma Physics, Nagoya University
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Tajiri Masayoshi
Research Information Center Institute Of Plasma Physics Nagoya University:department Of Mathematical
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Kato Yusuke
Department Of Applied Biological Chemistry Graduate School Of Agricultural And Life Sciences Univers
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KATO Y.
Department of Pathology, Tokyo Women's Medical University
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Taniuti Tosiya
Institute Of Plasma Physics Nagoya University
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