论文标题
二维费米气体中杂质引起的配对
Impurity-induced pairing in two-dimensional Fermi gases
论文作者
论文摘要
我们研究了由二维系统中吸引人相互作用的量子杂质介导的两个相同的费物之间的诱导配对。基于随机变异方法(SVM),我们研究了限制和有限相互作用范围对质量比的影响,量子三体问题的基态经历了从复合骨膜片到未结合的二聚体屈服状态的过渡。我们发现,限制和有限的相互作用范围可以极大地增强三聚体的稳定性,从而使其能够触及实验实现,例如Ultracold Atom Systems中发现的实验。在固态物理学的背景下,我们对约束三体问题的解决方案表明,激子介导的相互作用可能变得如此主导,以至于它们甚至可以克服原子上薄的半导体中电子之间的有害库仑排斥。因此,我们的工作为在有限密度的各种费米子系统中对玻色子诱导的配对的普遍理解铺平了道路,并为实现库珀配对形成的常规范式的新型电子配对的新形式打开了视角。
We study induced pairing between two identical fermions mediated by an attractively interacting quantum impurity in two-dimensional systems. Based on a Stochastic Variational Method (SVM), we investigate the influence of confinement and finite interaction range effects on the mass ratio beyond which the ground state of the quantum three-body problem undergoes a transition from a composite bosonic trimer to an unbound dimer-fermion state. We find that confinement as well as a finite interaction range can greatly enhance trimer stability, bringing it within reach of experimental implementations such as found in ultracold atom systems. In the context of solid-state physics, our solution of the confined three-body problem shows that exciton-mediated interactions can become so dominant that they can even overcome detrimental Coulomb repulsion between electrons in atomically-thin semiconductors. Our work thus paves the way towards a universal understanding of boson-induced pairing across various fermionic systems at finite density, and opens perspectives towards realizing novel forms of electron pairing beyond the conventional paradigm of Cooper pair formation.