Parish Meera M, Baur Stefan K, Mueller Erich J, Huse David A
Department of Physics, Princeton University, Princeton, New Jersey 08544, USA.
Phys Rev Lett. 2007 Dec 21;99(25):250403. doi: 10.1103/PhysRevLett.99.250403. Epub 2007 Dec 18.
We calculate the zero-temperature (T=0) phase diagram of a polarized two-component Fermi gas in an array of weakly coupled parallel one-dimensional (1D) "tubes" produced by a two-dimensional optical lattice. Increasing the lattice strength drives a crossover from three-dimensional (3D) to 1D behavior, stabilizing the Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) modulated superfluid phase. We argue that the most promising regime for observing the FFLO phase is in the quasi-1D regime, where the atomic motion is largely 1D but there is weak tunneling in the other directions that stabilizes long-range order. In the FFLO phase, we describe a phase transition where the quasiparticle spectrum changes from gapless near the 3D regime to gapped in quasi-1D.
我们计算了由二维光学晶格产生的弱耦合平行一维(1D)“管”阵列中极化双组分费米气体的零温度(T = 0)相图。增加晶格强度会驱动从三维(3D)到一维行为的转变,从而稳定富尔德 - 费雷尔 - 拉金 - 奥夫钦尼科夫(FFLO)调制超流相。我们认为,观察FFLO相最有前景的区域是准一维区域,在该区域中原子运动主要是一维的,但在其他方向存在弱隧穿,这有助于稳定长程序。在FFLO相中,我们描述了一种相变,其中准粒子能谱从三维区域附近的无隙变为准一维区域中的有隙。