Phys. Rev. A 35, 2619 - 2630 (1987)

Closed-form analytical model of the electron whistler and cyclotron maser instabilities in relativistic plasma with arbitrary energy anisotropy

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Peter H. Yoon and Ronald C. Davidson
Plasma Fusion Center, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139

Received 21 August 1986

Detailed properties of the cyclotron maser and whistler instabilities in a relativistic magnetized plasma are investigated for a particular choice of anisotropic distribution function F(p2,pz) that permits an exact analytical reduction of the dispersion relation for arbitrary energy anisotropy. The analysis assumes electromagnetic wave propagation parallel to a uniform applied magnetic field B0e^z. Moreover, the particular equilibrium distribution function considered in the present analysis assumes that all electrons move on a surface with perpendicular momentum p=p^=const and are uniformly distributed in axial momentum from pz=-p^z=const to pz=+p^z=const (so-called ‘‘waterbag’’ distribution in pz). This distribution function incorporates the effects of a finite momentum spread in the parallel direction. The resulting dispersion relation is solved numerically, and detailed properties of the cyclotron maser and whistler instabilities are determined over a wide range of energy anisotropy, normalized density ωp2c2, and electron energy.


©1987 The American Physical Society

URL: http://link.aps.org/abstract/PRA/v35/p2619
DOI: 10.1103/PhysRevA.35.2619
PACS: 52.35.Hr, 52.35.Qz, 52.60.+h

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