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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Statistics-dependent quantum co-walking of two particles in one-dimensional lattices with nearest-neighbor interactions
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Statistics-dependent quantum co-walking of two particles in one-dimensional lattices with nearest-neighbor interactions

机译:一维晶格中具有最近邻相互作用的两个粒子的统计依赖量子协同行走

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摘要

We investigate continuous-time quantumwalks of two indistinguishable particles [two bosons, or two fermions, or two hard-core bosons (HCBs)] in one-dimensional lattices with nearest-neighbor interactions. The results for two HCBs are consistent with the recent experimental observation of two-magnon dynamics [Fukuhara et al., Nature (London) 502, 76 (2013)]. The two interacting particles can undergo independent walking and/or co-walking depending on both quantum statistics and interaction strength. Two strongly interacting particles may form a bound state and then co-walk like a single composite particle with a statistics-dependent walk speed. Analytical solutions for the scattering and bound states, which appear in the two-particle quantum walks, are obtained by solving the eigenvalue problem in the two-particle Hilbert space. In the context of degenerate perturbation theory, an effective single-particle model for the quantum co-walking is analytically derived and the walk speed of bosons is found to be exactly three times that of fermions and HCBs. Our result paves the way for experimentally exploring quantum statistics via two-particle quantum walks.
机译:我们研究了具有近邻相互作用的一维晶格中两个不可区分的粒子(两个玻色子,两个费米子或两个硬核玻色子(HCBs))的连续时间量子行走。两种六氯代苯的结果与最近对两磁振子动力学的实验观察一致[Fukuhara等人,Nature(London)502,76(2013)]。取决于量子统计和相互作用强度,两个相互作用的粒子可以经历独立的行走和/或共同行走。两个强烈相互作用的粒子可能会形成束缚状态,然后像具有统计信息的行走速度的单个复合粒子一样共同行走。通过求解两粒子希尔伯特空间中的特征值问题,获得了出现在两粒子量子步态中的散射态和束缚态的解析解。在简并扰动理论的背景下,通过分析得出了一个有效的单粒子模型,用于量子共游走,并且发现玻色子的走动速度正好是费米子和六氯代苯的三倍。我们的结果为通过两粒子量子步态实验探索量子统计量铺平了道路。

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