English

Revealing the Spin Hydrodynamics of a Spin-Imbalanced Unitary Fermi Gas

Quantum Gases 2026-07-31 v1

Abstract

Hydrodynamics governs diverse collective phenomena in nature, from the expansion of a quarkgluon plasma to viscous electron flow in quantum materials. In strongly interacting hydrodynamic fluids, the transport of spin remains poorly understood. Here, we investigate spin transport in the hydrodynamic regime of a spin-imbalanced unitary Fermi gas confined in a uniform optical box. By quenching a spatially periodic optical potential that modulates both the density and spin polarization, we observe the relaxation of the many-body system, which determines both the spin diffusivity and the spin Seebeck/Peltier coefficients in a homogeneous quantum gas. Our measurements provide parameter-free benchmarks for microscopic theories and establish an ultracold atom platform for studying spin caloritronics in strongly correlated matter.

Keywords

Cite

@article{arxiv.2607.29647,
  title  = {Revealing the Spin Hydrodynamics of a Spin-Imbalanced Unitary Fermi Gas},
  author = {DeChao Zhang and Johannes Lang and J. E. Thomas},
  journal= {arXiv preprint arXiv:2607.29647},
  year   = {2026}
}

Comments

23 pages, 8 figures