Rapp Akos, Zaránd Gergely, Honerkamp Carsten, Hofstetter Walter
Theoretical Physics Department, Institute of Physics, Budapest University of Technology and Economy, Budapest, H-1521, Hungary.
Phys Rev Lett. 2007 Apr 20;98(16):160405. doi: 10.1103/PhysRevLett.98.160405. Epub 2007 Apr 18.
We study fermionic atoms of three different internal quantum states (colors) in an optical lattice, which are interacting through attractive on site interactions, U<0. Using a variational calculation for equal color densities and small couplings, |U|<|UC|, a color superfluid state emerges with a tendency to domain formation. For |U|>|UC|, triplets of atoms with different colors form singlet fermions (trions). These phases are the analogies of the color superconducting and baryonic phases in QCD. In ultracold fermions, this transition is found to be of second order. Our results demonstrate that quantum simulations with ultracold gases may shed light on outstanding problems in quantum field theory.
我们研究了光学晶格中处于三种不同内部量子态(颜色)的费米子原子,它们通过吸引性的在位相互作用(U<0)相互作用。对于等颜色密度和小耦合(|U|<|UC|)的情况,通过变分计算,出现了一种具有形成畴趋势的颜色超流态。当|U|>|UC|时,具有不同颜色的原子三重态形成单重态费米子(三重子)。这些相类似于量子色动力学中的颜色超导相和重子相。在超冷费米子中,发现这种转变是二级的。我们的结果表明,用超冷气体进行量子模拟可能会为量子场论中的突出问题提供线索。