Quantum relativistic theory of the cyclotron radiation in a strongly magnetized plasma with anisotropic temperature

Astronomy and Astrophysics – Astrophysics

Scientific paper

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Anisotropy, Cyclotron Radiation, Neutron Stars, Plasma Temperature, Quantum Theory, Relativistic Effects, Stellar Radiation, Absorption Spectra, Masers, Temperature Distribution

Scientific paper

The cyclotron radiation in a tenuous, strongly magnetized plasma with anisotropic temperature is considered on the basis of the quantum relativistic theory. It is shown that the quantum effects lead to oscillations in the spectra of the absorption coefficients and emissivity if the transverse temperature sufficiently exceeds the longitudinal one. Negative absorption (maser amplification) is also possible due to quantum effects in such a plasma if the angle between the magnetic field and the wave-vector is not too close to 0 or 90 deg.

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