Transverse electric conductivity and dielectric permeability in quantum non-degenerate and maxwellian collisional plasma with variable collision frequency in Mermin's approach
arXiv:1302.3993
Abstract
Formulas for transverse conductance and dielectric permeability in quantum non-degenerate and Maxwellian collisional plasma with arbitrary variable collision frequency in Mermin's approach are deduced. Frequency of collisions of particles depends arbitrarily on a wave vector. The special case of frequency of collisions proportional to the module of a wave vector is considered. The graphic analysis of the real and imaginary parts of dielectric function is made.
20 pages, 12 figures. arXiv admin note: substantial text overlap with arXiv:1302.3237, arXiv:1302.0838, arXiv:1302.0718
References in corpus (5)
- Interpolation between static local field corrections and the Drude model by a generalized Mermin approach
- Longitudinal electric conductivity and dielectric permeability in quantum plasma with variable frequency of collisions in Mermin' approach
- Longitudinal dielectric permeability into quantum non-degenerate and maxwellian plasma with frequency of collisions proportional to the module of a wave vector
- Longitudinal dielectric permeability into quantum degenerate plasma with frequency of collisions proportional to the module of a wave vector
- Transverse electric conductivity and dielectric permeability in quantum degenerate collisional plasma with variable collision frequency in Mermin's approach