English

Entangled Superfluids

Quantum Gases 2015-05-14 v2

Abstract

We study the condensate dynamics of the so-called entangled Bose-Einstein condensation (EBEC), which is the ground state of a mixture of two species of pseudospin-12\frac{1}{2} atoms with interspecies spin-exchange scattering in certain parameter regimes. EBEC leads to four inter-dependent superfluid components, each corresponding to the orbital wave function associated with a spin component of a species. The four superflows have various counter-relations, and altogether lead to a conserved total supercurrent and a conserved total spin supercurrent. In the homogenous case, we also obtain the elementary excitations due to variations of the single-particle orbital wave functions, by exactly solving the generalized time-dependent Bogoliubov equations. There are three gapless Bogoliubov modes and one Klein-Gordon-like gapped mode. The origin of these excitations are also discussed from the perspective of spontaneous breaking of the symmetries possessed by the system.

Keywords

Cite

@article{arxiv.0909.4990,
  title  = {Entangled Superfluids},
  author = {Yu Shi},
  journal= {arXiv preprint arXiv:0909.4990},
  year   = {2015}
}

Comments

10 pages. Published in PRA

R2 v1 2026-06-21T13:51:12.625Z