Large-amplitude compression waves in an adiabatic two-fluid model of a collision-free plasma

Author:

Morton K. W.

Abstract

The development of large amplitude compression waves in a collision-free plasma is studied by considering the motion of a plane piston into a uniform stationary plasma containing a magnetic field parallel to the plane of the piston. The adiabatic two-fluid equations are solved by finite-difference methods and the form of the waves after a long time is compared with the possible steady-state solutions.A generalized discontinuous solution of the steady-state equations is found for sufficiently high Mach numbers. At the highest Mach numbers this leads to a constant state at the piston; while at lower speeds a wave train results whose amplitude increases as the speed decreases. In each of these cases the numerical solutions of the time-dependent equations converge rapidly to the steady-state solutions. At still lower speeds, where the solitary-wave solution exists, the situation is less clear.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference13 articles.

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2. Neumann, J. von & Richtmyer, R. D. 1950 A method for the numerical calculation of hydrodynamic shocks.J. Appl. Phys. 21,232.

3. Davis, L. , Lüst, R. & Schlüter, A. 1958 The structure of hydromagnetic shock waves. I. Non-linear hydromagnetic waves in a cold plasma.Z. Naturforsch. 13a,916.

4. Baños, Jr. A , & Vernon, A. R. 1960 Large amplitude waves in a collision-free plasma. I. Single pulses with isotropic pressure.Nuovo Cimento,15,269.

5. Morawetz, C. S. 1959 Magneto-hydrodynamic shock structure using friction. NYO-8677, Courant Inst. Math. Sci .,New York University.

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