English

Existence and uniqueness of solutions to the quantum Boltzmann equation for soft potentials

Analysis of PDEs 2022-01-25 v2

Abstract

In this paper we consider a modified quantum Boltzmann equation with the quantum effect measured by a continuous parameter δ\delta that can decrease from δ=1\delta=1 for the Fermi-Dirac particles to δ=0\delta=0 for the classical particles. In case of soft potentials, for the corresponding Cauchy problem in the whole space or in the torus, we establish the global existence and uniqueness of non-negative mild solutions in the function space LTLv,xLTLxLv1L^{\infty}_{T}L^{\infty}_{v,x}\cap L^{\infty}_{T}L^{\infty}_{x}L^1_v with small defect mass, energy and entropy but allowed to have large amplitude up to the possibly maximum upper bound F(t,x,v)1δF(t,x,v)\leq \frac{1}{\delta}. The key point is that the obtained estimates are uniform in the quantum parameter 0<δ10< \delta\leq1. In particular, as δ0\delta\to 0 we can recover the results on the classical Boltzmann equation around global Maxwellians for which solutions may have arbitrarily large oscillations.

Keywords

Cite

@article{arxiv.2112.10357,
  title  = {Existence and uniqueness of solutions to the quantum Boltzmann equation for soft potentials},
  author = {Zongguang Li},
  journal= {arXiv preprint arXiv:2112.10357},
  year   = {2022}
}

Comments

40 pages. All comments are welcome