论文标题

BEC的解决方案在一个维度上淬火

Solution of the BEC to BCS Quench in One Dimension

论文作者

Rylands, Colin, Calabrese, Pasquale, Bertini, Bruno

论文摘要

限制在准一维几何形状中的相互作用的费物的气体表明,在缓慢驱动其耦合常数的情况下通过约束引起的共振,BEC对BCS交叉。在交叉的一侧,费米子形成了表现为排斥bose气体的紧密结合的骨气分子,而另一方面,它们形成了库珀对,其大小远大于平均粒子间距离。在这里,我们考虑耦合常数从BEC到BCS值突然变化时产生的情况。也就是说,我们研究BEC-BCS淬火。通过利用哈伯德模型中最近发现的可溶解淬灭的合适连续限制,我们表明,可以通过淬灭行动方法准确地确定淬灭之后的局部固定状态。我们通过计算局部对相关函数以及准粒子分布函数来提供对固定态的实验访问表征。我们发现,稳态越来越多地由两个粒子自旋单线结合状态支配,以提高相互作用强度,但是在较大的BEC密度下,这种结合状态的形成受到抑制。界面速度分布显示四分之一的电力法衰减表明违反了谭的接触关系。

A gas of interacting fermions confined in a quasi one-dimensional geometry shows a BEC to BCS crossover upon slowly driving its coupling constant through a confinement-induced resonance. On one side of the crossover the fermions form tightly-bound bosonic molecules behaving as a repulsive Bose gas, while on the other they form Cooper pairs, whose size is much larger than the average inter-particle distance. Here we consider the situation arising when the coupling constant is varied suddenly from the BEC to the BCS value. Namely, we study a BEC-to-BCS quench. By exploiting a suitable continuum limit of recently discovered solvable quenches in the Hubbard model, we show that the local stationary state reached at large times after the quench can be determined exactly by means of the Quench Action approach. We provide an experimentally-accessible characterisation of the stationary state by computing local pair correlation function as well as the quasi-particle distribution functions. We find that the steady state is increasingly dominated by two particle spin singlet bound states for stronger interaction strength but that bound state formation is inhibited at larger BEC density. The bound state rapidity distribution displays quartic power law decay suggesting a violation of Tan's contact relations.

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