English

Universal van der Waals Force Between Heavy Polarons in Superfluids

Quantum Gases 2022-12-01 v3 High Energy Physics - Theory Nuclear Theory

Abstract

We investigate the long-range behavior of the induced Casimir interaction between two spinless heavy impurities, or polarons, in superfluid cold atomic gases. With the help of effective field theory (EFT) of a Galilean invariant superfluid, we show that the induced impurity-impurity potential at long distance universally shows a relativistic van der Waals-like attraction (1/r7\sim 1/r^7) resulting from the exchange of two superfluid phonons. We also clarify finite temperature effects from the same two-phonon exchange process. The temperature TT introduces the additional length scale cs/Tc_s/T with the speed of sound csc_s. Leading corrections at finite temperature scale as T6/rT^6/r for distances rcs/Tr \ll c_s/T smaller than the thermal length. For larger distances the potential shows a nonrelativistic van der Waals behavior (T/r6\sim T/r^6) instead of the relativistic one. Our EFT formulation applies not only to weakly coupled Bose or Fermi superfluids but also to that composed of strongly-coupled unitary fermions with a weakly coupled impurity. The sound velocity controls the magnitude of the van der Waals potential, which we evaluate for the fermionic superfluid in the BCS-BEC crossover.

Keywords

Cite

@article{arxiv.2206.01048,
  title  = {Universal van der Waals Force Between Heavy Polarons in Superfluids},
  author = {Keisuke Fujii and Masaru Hongo and Tilman Enss},
  journal= {arXiv preprint arXiv:2206.01048},
  year   = {2022}
}

Comments

main text: 7 pages, 3 figures. Supplemental material: 5 pages, 2 figures

R2 v1 2026-06-24T11:37:11.464Z