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首页> 外文期刊>Journal of Statistical Physics >Spontaneous Symmetry Breaking in Coupled Bose-Einstein Condensates
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Spontaneous Symmetry Breaking in Coupled Bose-Einstein Condensates

机译:耦合Bose-Einstein凝聚液中的自发对称性断裂

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摘要

We study a system of two hardcore bosonic Hubbard models weakly coupled with each other by tunneling. Assuming that the single uncoupled model exhibits off-diagonal long-range order, we prove that the coupled system exhibits spontaneous symmetry breaking (SSB) in the infinite volume limit, in the sense that the two subsystems maintain a definite relative U(1) phase when the tunneling is turned off. Although SSB of the U(1) phase is never observable in a single system, SSB of the relative U(1) phase is physically meaningful and observable by interference experiments. The present theorem is made possible by the rigorous theory of low-lying states and SSB in quantum antiferromagnets developed over the years.
机译:我们研究了一个通过隧道互相耦合彼此弱耦合的两个硬核振荡器的系统系统。 假设单个解耦模型呈现出对角线的远程顺序,我们证明耦合系统在无限体积限制中呈现自发对称的断裂(SSB),从而认为两个子系统保持一个明确的相对U(1)相位 当隧道关闭时。 尽管U(1)相的SSB在单个系统中从未观察到,但相对U(1)相的SSB通过干扰实验物理有意义和可观察。 本定理是通过多年来的量子反铁膜中的低洼状态和SSB的严格理论来实现的。

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