English

General relations for quantum gases in two and three dimensions. Two-component fermions

Quantum Gases 2019-03-20 v4

Abstract

We derive exact relations for NN spin-1/2 fermions with zero-range or short-range interactions, in continuous space or on a lattice, in 2D2D or in 3D3D, in any external potential. Some of them generalize known relations between energy, momentum distribution n(k)n(k), pair distribution function g(2)(r)g^{(2)}(r), derivative of the energy with respect to the scattering length aa. Expressions are found for the second order derivative of the energy with respect to 1/a1/a (or to lna\ln a in 2D2D). Also, it is found that the leading energy corrections due to a finite interaction range, are proportional to the effective range r_er\_e in 3D3D (and to r_e2r\_e^2 in 2D2D) with exprimable model-independent coefficients, that give access to the subleading short distance behavior of g(2)(r)g^{(2)}(r) and to the subleading 1/k61/k^6 tail of n(k)n(k). This applies to lattice models for some magic dispersion relations, an example of which is given. Corrections to exactly solvable two-body and three-body problems are obtained. For the trapped unitary gas, the variation of the finite-1/a1/a and finite r_er\_e energy corrections within each SO(2,1)SO(2,1) energy ladder is obtained; it gives the frequency shift and the collapse time of the breathing mode. For the bulk unitary gas, we compare to fixed-node Monte Carlo data, and we estimate the experimental uncertainty on the Bertsch parameter due to a finite r_er\_e.

Keywords

Cite

@article{arxiv.1204.3204,
  title  = {General relations for quantum gases in two and three dimensions. Two-component fermions},
  author = {Félix Werner and Yvan Castin},
  journal= {arXiv preprint arXiv:1204.3204},
  year   = {2019}
}

Comments

Augmented version: with respect to published version, subsection V.K added (minorization of the contact by the order parameter). arXiv admin note: text overlap with arXiv:1001.0774

R2 v1 2026-06-21T20:49:29.879Z