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Mobile spin impurity in an optical lattice

机译:光学晶格中的移动自旋杂质

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摘要

We investigate the Fermi polaron problem in a spin-1/2 Fermi gas in an optical lattice for the limit of both strong repulsive contact interactions and one dimension. In this limit, a polaronic-like behaviour is not expected, and the physics is that of a magnon or impurity. While the charge degrees of freedom of the system are frozen, the resulting tight-binding Hamiltonian for the impurity's spin exhibits an intriguing structure that strongly depends on the filling factor of the lattice potential. This filling dependency also transfers to the nature of the interactions for the case of two magnons and the important spin balanced case. At low filling, and up until near unit filling, the single impurity Hamiltonian faithfully reproduces a single-band, quasi-homogeneous tight-binding problem. As the filling is increased and the second band of the single particle spectrum of the periodic potential is progressively filled, the impurity Hamiltonian, at low energies, describes a single particle trapped in a multi-well potential. Interestingly, once the first two bands are fully filled, the impurity Hamiltonian is a near-perfect realisation of the Su–Schrieffer–Heeger model. Our studies, which go well beyond the single-band approximation, that is, the Hubbard model, pave the way for the realisation of interacting one-dimensional models of condensed matter physics.
机译:我们研究了强排斥接触相互作用和一维极限的自旋1/2费米气体在光学晶格中的费米极化子问题。在此极限下,不会出现类似于极化子的行为,其物理性质是磁振子或杂质。当系统的电荷自由度被冻结时,所产生的杂质自旋的紧密结合的哈密顿量显示出一种有趣的结构,该结构在很大程度上取决于晶格势的填充因子。对于两个磁振子的情况和重要的自旋平衡情况,这种填充依赖性还转换为相互作用的性质。在低填充和直至接近单元填充时,单一杂质哈密顿量忠实地重现了单带,准均质紧密结合问题。随着填充量的增加和周期性电势的单个粒子光谱的第二个带逐渐被填充,杂质哈密顿量在低能量下描述为陷于多阱电势的单个粒子。有趣的是,一旦前两个带被完全填充,杂质哈密顿量就是Su–Schrieffer–Heeger模型的近乎完美的实现。我们的研究远远超出了单带近似(即Hubbard模型),为实现相互作用的凝聚态物理一维模型铺平了道路。

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