Dispersion in a Relativistic Quantum Electron Gas. I. General Distribution Functions
Leith M Hayes and DB Melrose
Australian Journal of Physics
37(6) 615 - 638
Published: 1984
Abstract
The covariant response tensor for a relativistic electron gas is calculated in two ways. One involves introducing a four-dimensional generalization of the electron-positron occupation number, and the other is a covariant generalization of a method due to Harris. The longitudinal and transverse parts are. evaluated for an isotropic electron gas in terms of three plasma dispersion functions, and the contributions from Landau damping and pair creation to the dispersion curve are identified separately. The long-wavelength limit and the non-quantum limit, with first quantum corrections, are found. The plasma dispersion functions are evaluated explicitly for a completely degenerate relativistic electron gas, and a detailed form due to Jancovici is reproduced.https://doi.org/10.1071/PH840615
© CSIRO 1984