English

Thermal-induced Local Imbalance in Repulsive Binary Bose Mixtures

Quantum Gases 2023-10-20 v1

Abstract

We study repulsive two-component Bose mixtures with equal populations and confined in a finite-size box through path-integral Monte Carlo simulations. For different values of the ss-wave scattering length of the interspecies potential, we calculate the local population imbalance in a region of fixed volume inside the box at different temperatures. We find two different behaviors: for phase-separated states at T=0T=0, thermal effects induce a diffusion process which reduces the local imbalance whereas, for miscible states at T=0T=0, a maximum in the local population imbalance appears at a certain temperature, below the critical one. We show that this intriguing behavior is strongly related to the bunching effect associated with the Bose-Einstein statistics of the particles in the mixture and to an unexpected behavior of the cross pair distribution function not reported before.

Keywords

Cite

@article{arxiv.2302.13659,
  title  = {Thermal-induced Local Imbalance in Repulsive Binary Bose Mixtures},
  author = {Gerard Pascual and Gabriele Spada and Sebastiano Pilati and Stefano Giorgini and Jordi Boronat},
  journal= {arXiv preprint arXiv:2302.13659},
  year   = {2023}
}

Comments

7 pages, 7 figures

R2 v1 2026-06-28T08:50:22.030Z