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首页> 外文期刊>Physical review letters >Advantages of Mass-Imbalanced Ultracold Fermionic Mixtures for Approaching Quantum Magnetism in Optical Lattices
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Advantages of Mass-Imbalanced Ultracold Fermionic Mixtures for Approaching Quantum Magnetism in Optical Lattices

机译:质量不平衡的超冷铁离子混合物在光学晶格中接近量子磁性的优势

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摘要

We study magnetic phases of two-component mixtures of ultracold fermions with repulsive interactions in optical lattices in the presence of hopping imbalance. Our analysis is based on dynamical mean-field theory (DMFT) and its real-space generalization at finite temperature. We study the temperature dependence of the transition into the ordered state as a function of the interaction strength and the imbalance parameter in two and three spatial dimensions. We show that below the critical temperature for Neel order mass-imbalanced mixtures also exhibit a charge-density wave, which provides a directly observable signature of the ordered state. For the trapped system, we compare our results obtained by real-space DMFT to a local-density approximation. We calculate the entropy for a wide range of parameters and identify regions, in which mass-imbalanced mixtures could have clear advantages over balanced ones for the purpose of obtaining and detecting quantum magnetism.
机译:我们研究了存在跳变不平衡时,在光学晶格中具有排斥相互作用的超冷费米子两组分混合物的磁相。我们的分析基于动态平均场理论(DMFT)及其在有限温度下的实空间泛化。我们研究了在两个和三个空间维度中转变为有序状态的温度依赖性,该温度依赖性是相互作用强度和不平衡参数的函数。我们表明,在低于Neel阶的临界温度下,质量不平衡的混合物还显示出电荷密度波,该波提供了可直接观察到的有序状态的特征。对于被困的系统,我们将通过实空间DMFT获得的结果与局部密度近似进行比较。我们计算各种参数的熵,并确定区域,其中质量不平衡的混合物可能比平衡的混合物具有明显的优势,以获取和检测量子磁性。

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