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The Physics of Plasma Turbulence
Emission and absorption mechanisms for waves in a plasma
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absorption Alfven waves amplification angle anisotropy anomalous assume beam chromospheric chromospheric flare coHe collisions Compton scattering connected consider corresponding cosmic conditions cosmic plasma damping rate decay decreases determined diffusion dispersion relation distribution function effect electric field electromagnetic radiation electromagnetic waves emission coefficient emission mechanisms emission probability emitted energy density energy transfer equation estimate excitation fast particles fusion group velocity growth rate high-frequency important increase instance intensity interactions ion-sound turbulence ion-sound waves isotropic Landau damping Langmuir waves larger low-frequency magnetic field maximum non-linear scattering occurs optical oscillations parameters particle distribution particle energy phase velocity plasma astrophysics plasma physics plasma turbulence plasma waves polarization possible problem pulsar quantity quasi-linear relaxation radio-emission relativistic electrons relativistic particles resonance scattering process shock wave solar corona spectral density spectrum stabilization strong magnetic field synchrotron emission synchrotron mechanism theory thermal transverse plasmons Tsytovich turbulent plasma type III bursts wavenumber wavevector whistlers