Density-dependent spin-orbit coupling in degenerate quantum gases

Peng Xu, Tian-Shu Deng, Wei-mou Zheng, H. Zhai
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引用次数: 2

Abstract

In this letter we propose a method to realize a kind of spin-orbit coupling in ultracold Bose and Fermi gases whose format and strength depend on density of atoms. Our method combines two-photon Raman transition and periodical modulation of spin-dependent interaction, which gives rise to the direct Raman process and the interaction assisted Raman process, and the latter depends on density of atoms. These two processes have opposite effects in term of spin-momentum locking and compete with each other. As the interaction modulation increases, the system undergoes a crossover from the direct Raman process dominated regime to the interaction assisted Raman process dominated regime. For this crossover, we show that for bosons, both the condensate momentum and the chirality of condensate wave function change sign, and for fermions, the Fermi surface distortion is inverted. We highlight that there exists an emergent spatial reflection symmetry in the crossover regime, which can manifest itself universally in both Bose and Fermi gases. Our method paves a way to novel phenomena in a non-abelian gauge field with intrinsic dynamics.
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简并量子气体中密度依赖的自旋轨道耦合
在这封信中,我们提出了一种方法来实现一种自旋轨道耦合的超冷玻色和费米气体,其格式和强度取决于原子密度。我们的方法结合了双光子拉曼跃迁和自旋依赖相互作用的周期调制,产生了直接拉曼过程和相互作用辅助拉曼过程,后者取决于原子的密度。这两个过程在自旋动量锁定方面具有相反的效果,并且相互竞争。随着相互作用调制的增加,系统经历了从直接拉曼过程主导到相互作用辅助拉曼过程主导的交叉。对于这种交叉,我们证明了对于玻色子,凝聚动量和凝聚波函数的手性都改变了符号,对于费米子,费米表面畸变是反转的。我们强调在交叉区存在突现的空间反射对称性,这种对称性可以在玻色和费米气体中普遍表现出来。我们的方法为研究具有内禀动力学的非阿贝尔规范场中的新现象开辟了一条道路。
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