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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Hall response of interacting bosonic atoms in strong gauge fields: From condensed to fractional-quantum-Hall states
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Hall response of interacting bosonic atoms in strong gauge fields: From condensed to fractional-quantum-Hall states

机译:强规范场中相互作用的硼原子的霍尔响应:从凝聚态到分数量子霍尔态

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Interacting bosonic atoms under strong gauge fields undergo a series of phase transitions that take the cloud from a simple Bose-Einstein condensate all the way to a family of fractional-quantum-Hall-type states. In this work we demonstrate that the Hall response of the atoms can be used to locate the phase transitions and characterize the ground state of the many-body state. Moreover, the same response function reveals within some regions of the parameter space, the structure of the spectrum and the allowed transitions to excited states. We verify numerically these ideas using exact diagonalization for a small number of atoms, and provide an experimental protocol to implement the gauge fields and probe the linear response using a periodically driven optical lattice. Finally, we discuss our theoretical results in relation to recent experiments with condensates in artificial magnetic fields and we analyze the role played by vortex states in the Hall response.
机译:在强规范场下相互作用的玻色子原子经历了一系列相变,这些相变使云团从简单的玻色-爱因斯坦凝聚态一直延伸到分数量子霍尔型态。在这项工作中,我们证明了原子的霍尔响应可用于定位相变并表征多体态的基态。此外,相同的响应函数揭示了参数空间的某些区域内,频谱的结构以及允许的跃迁到激发态。我们使用少量原子的精确对角线化对这些想法进行了数值验证,并提供了一个实验方案来实现量规场并使用周期性驱动的光学晶格探测线性响应。最后,我们讨论了与最近在人造磁场中凝结物相关的实验的理论结果,并分析了涡旋态在霍尔响应中所起的作用。

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