Effect of magnetic field on transports of charged particles in the weakly ionized plasma with power-law q-distributions in nonextensive statistics
arXiv:2003.02052 · doi:10.1016/j.physa.2019.123281
Abstract
By using the generalized Boltzmann equation of transport in nonextensive statistics, we study transport properties of the diffusion flux and the heat flux of charged particles in the weakly ionized plasma with the power-law q-distributions under the magnetic field. We derive the tensor expressions of diffusion coefficient, thermal diffusion coefficient, mobility and thermal conductivity of electrons and ions in the q-distributed plasma under magnetic field. We show that the tensors of the diffusion coefficient, the thermal diffusion coefficient and the thermal conductivity are strongly depend on the q-parameters in nonextensive statistics, and so they are generally not the same as those in the magnetized plasma with a Maxwell distribution.
17 pages, 4 figures, 40 references
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Cited by in corpus (3)
- The collision frequency of electron-neutral-particle in the weakly ionized plasmas with Non-Maxwellian velocity distributions
- The collision frequency of electron-neutral-particle in the weakly ionized plasma with the power-law velocity distribution
- The collision frequencies of charged particles in the complex plasmas with the non-Maxwellian velocity distributions