Intercomponent entanglement entropy and spectrum in binary Bose-Einstein condensates

Takumi Yoshino, S. Furukawa, Masahito Ueda
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Abstract

We study the entanglement entropy and spectrum between components in binary Bose-Einstein condensates in $d$ spatial dimensions. We employ effective field theory to show that the entanglement spectrum exhibits an anomalous square-root dispersion relation in the presence of an intercomponent tunneling (a Rabi coupling) and a gapped dispersion relation in its absence. These spectral features are associated with the emergence of long-range interactions in terms of the superfluid velocity and the particle density in the entanglement Hamiltonian. Our results demonstrate that unusual long-range interactions can be emulated in a subsystem of multicomponent BECs that have only short-range interactions. We also find that for a finite Rabi coupling the entanglement entropy exhibits a volume-law scaling with subleading logarithmic corrections originating from the Nambu-Goldstone mode and the symmetry restoration for a finite volume.
二元玻色-爱因斯坦凝聚体的组分间纠缠熵和谱
研究了二元玻色-爱因斯坦凝聚体在d空间维度上的纠缠熵和组分间的谱。我们运用有效场理论证明了纠缠谱在组分间隧穿(拉比耦合)存在时表现出反常的平方根色散关系,而在组分间隧穿不存在时表现出间隙色散关系。这些光谱特征与超流体速度和纠缠哈密顿量中的粒子密度的远程相互作用的出现有关。我们的研究结果表明,在只有短程相互作用的多组件bec子系统中,可以模拟不寻常的远程相互作用。我们还发现,对于有限Rabi耦合,纠缠熵表现出一种体积律标度,具有源于Nambu-Goldstone模式的次领先对数修正和有限体积的对称性恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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