Single-particle velocity distributions of collisionless, steady-state plasmas must follow Superstatistics
arXiv:1906.08072 · doi:10.1103/PhysRevE.100.023205
Abstract
The correct modelling of velocity distribution functions for particles in steady-state plasmas is a central element in the study of nuclear fusion and also in the description of space plasmas. In this work, a statistical mechanical formalism for the description of collisionless plasmas in a steady state is presented, based solely on the application of the rules of probability and not relying on the concept of entropy. Beck and Cohen's superstatistical framework is recovered as a limiting case, and a "microscopic" definition of inverse temperature is given. Non-extensivity is not invoked a priori but enters the picture only through the analysis of correlations between parts of the system.