Parish M M, Marchetti F M, Lamacraft A, Simons B D
Cavendish Laboratory, J. J. Thomson Avenue, Cambridge, CB3 0HE, United Kingdom.
Phys Rev Lett. 2007 Apr 20;98(16):160402. doi: 10.1103/PhysRevLett.98.160402. Epub 2007 Apr 18.
We consider a two-component atomic Fermi gas within a mean-field, single-channel model, where both the mass and population of each component are unequal. We show that the tricritical point at zero temperature evolves smoothly from the BEC to BCS side of the resonance as a function of mass ratio r. We find that the interior gap state proposed by Liu and Wilczek is always unstable to phase separation, while the breached pair state with one Fermi surface for the excess fermions exhibits differences in its density of states and pair correlation functions depending on which side of the resonance it lies. Finally, we show that, when r greater, similar 3.95, the finite-temperature phase diagram of trapped gases at unitarity becomes topologically distinct from the equal mass system.
我们考虑一个处于平均场单通道模型中的双组分原子费米气体,其中每个组分的质量和粒子数均不相等。我们表明,零温度下的三临界点作为质量比r的函数,从共振的玻色 - 爱因斯坦凝聚(BEC)侧到玻色 - 库珀对超流(BCS)侧平滑演变。我们发现,Liu和Wilczek提出的内部能隙态对于相分离总是不稳定的,而对于过量费米子具有一个费米面的破裂对态,其态密度和对关联函数根据其位于共振的哪一侧而表现出差异。最后,我们表明,当r大于约3.95时,幺正性下捕获气体的有限温度相图在拓扑结构上与等质量系统不同。