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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Variational study of polarons and bipolarons in a one-dimensional Bose lattice gas in both the superfluid and the Mott-insulator regimes
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Variational study of polarons and bipolarons in a one-dimensional Bose lattice gas in both the superfluid and the Mott-insulator regimes

机译:超流态和莫特-绝缘体态下一维玻色晶格气体中极化子和双极化子的变分研究

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We use variational methods to study a spin impurity in a one-dimensional Bose lattice gas. Both in the strongly interacting superfluid regime and in the Mott regime we find that the impurity binds with a hole, forming a polaron. Our calculations for the dispersion of the polaron are consistent with recent experiments by Fukuhara et al. [Nat. Phys. 9, 235 (2013)] and give a better understanding of their numerical simulations. We find that for sufficiently weak interactions there are ranges of momentum for which the polaron is unstable. We propose experimentally studying the stability of the polaron by measuring the correlation between the impurity and the hole. We also study two interacting impurities, finding stable bipolarons for sufficiently strong interactions.
机译:我们使用变分方法来研究一维Bose晶格气体中的自旋杂质。在强相互作用的超流体体系和莫特体系中,我们都发现杂质与空穴结合,形成极化子。我们对极化子弥散的计算与Fukuhara等人最近的实验一致。 [Nat。物理9,235(2013)],并对其数值模拟有更好的理解。我们发现,对于足够弱的相互作用,存在极化子不稳定的动量范围。我们建议通过测量杂质和空穴之间的相关性,通过实验研究极化子的稳定性。我们还研究了两种相互作用的杂质,找到了稳定的双极化子以实现足够强的相互作用。

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