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首页> 外文期刊>Physical review letters >Cold Atoms in Non-Abelian Gauge Potentials: From the Hofstadter 'Moth' to Lattice Gauge Theory
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Cold Atoms in Non-Abelian Gauge Potentials: From the Hofstadter 'Moth' to Lattice Gauge Theory

机译:非阿贝尔电势中的冷原子:从霍夫施塔特“莫特”到格规理论

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摘要

We demonstrate how to create artificial external non-Abelian gauge potentials acting on cold atoms in optical lattices. The method employs atoms with k internal states, and laser assisted state sensitive tunneling, described by unitary k X k matrices. The single-particle dynamics in the case of intense U(2) vector potentials lead to a generalized Hofstadter butterfly spectrum which shows a complex mothlike structure. We discuss the possibility to realize non-Abelian interferometry (Aharonov-Bohm effect) and to study many-body dynamics of ultracold matter in external lattice gauge fields.
机译:我们演示了如何创建作用在光学晶格中冷原子上的人工外部非阿贝尔规范势。该方法使用具有k个内部状态的原子和激光辅助状态敏感隧穿,用单一的k X k矩阵描述。在强U(2)矢量势的情况下的单粒子动力学导致广义Hofstadter蝴蝶光谱,该光谱显示出复杂的蛾状结构。我们讨论了实现非阿贝尔干涉法(Aharonov-Bohm效应)以及研究外部晶格规范场中超冷物质的多体动力学的可能性。

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