费米量子环光谱中BCS-BEC交叉的特征

U. Ebling, A. Alavi, J. Brand
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引用次数: 6

摘要

本文研究了低密度下具有吸引场相互作用的量子环组态中自旋1/2费米子的Hubbard模型的非零总动量(yrast态)的最低能态的性质。在一维(1D)情况下,我们使用Bethe ansatz求解Hubbard模型,而对于跨入二维区域,我们使用全构型相互作用量子蒙特卡罗方法(FCIQMC)获得自旋平衡费米系统的稳态。我们展示了yrast激发光谱如何从一维到二维的变化,以及配对如何影响yrast光谱。我们还发现了通常与暗孤子相关的某些光态的碎片化凝聚特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Signatures of the BCS-BEC crossover in the yrast spectra of Fermi quantum rings
We study properties of the lowest energy states at non-zero total momentum (yrast states) of the Hubbard model for spin-1/2 fermions in the quantum ring configuration with attractive on-site interaction at low density. In the one-dimensional (1D) case we solve the Hubbard model using the Bethe ansatz, while for the crossover into the 2D regime we use the Full-Configuration-Interaction Quantum Monte-Carlo method (FCIQMC) to obtain the yrast states for the spin-balanced Fermi system. We show how the yrast excitation spectrum changes from the 1D to the 2D regime and how pairing affects the yrast spectra. We also find signatures of fragmented condensation for certain yrast states usually associated with dark solitons.
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