English

Repulsive Fermi polarons with negative effective mass

Quantum Gases 2017-11-09 v2

Abstract

Recent LENS experiment on a 3D Fermi gas has reported a negative effective mass (m<0m^*<0) of Fermi polarons in the strongly repulsive regime. There naturally arise a question whether the negative mm^* is a precursor of the instability towards phase separation (or itinerant ferromagnetism). In this work, we make use of the exact solutions to study the ground state and excitation properties of repulsive Fermi polarons in 1D, which can also exhibit a negative mm^* in the super Tonks-Girardeau regime. By analyzing the total spin, quasi-momentum distribution and pair correlations, we conclude that the negative mm^* is irrelevant to the instability towards ferromagnetism or phase separation, but rather an intrinsic feature of collective excitations for fermions in the strongly repulsive regime. Surprisingly, for large and negative mm^*, such excitation is accompanied with a spin density modulation when the majority fermions move closer to the impurity rather than being repelled far away, contrary to the picture of phase separation. These results suggest an alternative interpretation of negative mm^* as observed in recent LENS experiment.

Keywords

Cite

@article{arxiv.1708.00134,
  title  = {Repulsive Fermi polarons with negative effective mass},
  author = {Wenliang Li and Xiaoling Cui},
  journal= {arXiv preprint arXiv:1708.00134},
  year   = {2017}
}

Comments

6 pages, 3 figures

R2 v1 2026-06-22T21:03:01.494Z