English

Real-time spin-charge separation in one-dimensional Fermi gases from generalized hydrodynamics

Statistical Mechanics 2022-09-21 v3 Quantum Gases

Abstract

We revisit early suggestions to observe spin-charge separation (SCS) in cold-atom settings {in the time domain} by studying one-dimensional repulsive Fermi gases in a harmonic potential, where pulse perturbations are initially created at the center of the trap. We analyze the subsequent evolution using generalized hydrodynamics (GHD), which provides an exact description, at large space-time scales, for arbitrary temperature TT, particle density, and interactions. At T=0T=0 and vanishing magnetic field, we find that, after a nontrivial transient regime, spin and charge dynamically decouple up to perturbatively small corrections which we quantify. In this limit, our results can be understood based on a simple phase-space hydrodynamic picture. At finite temperature, we solve numerically the GHD equations, showing that for low T>0T>0 effects of SCS survive and {characterize} explicitly the value of TT for which the two distinguishable excitations melt.

Keywords

Cite

@article{arxiv.2105.12649,
  title  = {Real-time spin-charge separation in one-dimensional Fermi gases from generalized hydrodynamics},
  author = {Stefano Scopa and Pasquale Calabrese and Lorenzo Piroli},
  journal= {arXiv preprint arXiv:2105.12649},
  year   = {2022}
}

Comments

12 pages, 7 figures; v2: modified layout; corrected some typos