Effective Dynamics of Interacting Fermions from Semiclassical Theory to the Random Phase Approximation
Mathematical Physics
2022-08-17 v3 Quantum Gases
math.MP
Abstract
I review results concerning the derivation of effective equations for the dynamics of interacting Fermi gases in a high-density regime of mean-field type. Three levels of effective theories, increasing in precision, can be distinguished: the semiclassical theory given by the Vlasov equation, the mean-field theory given by the Hartree-Fock equation, and the description of the dominant effects of non-trivial entanglement by the random phase approximation. Particular attention is given to the discussion of admissible initial data, and I present an example of a realistic quantum quench that can be approximated by Hartree-Fock dynamics.
Keywords
Cite
@article{arxiv.2203.11255,
title = {Effective Dynamics of Interacting Fermions from Semiclassical Theory to the Random Phase Approximation},
author = {Niels Benedikter},
journal= {arXiv preprint arXiv:2203.11255},
year = {2022}
}
Comments
contribution to the proceedings of ICMP 2021, v3: minor corrections