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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Density-wave patterns for fermionic dipolar molecules on a square optical lattice: Mean-field-theory analysis
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Density-wave patterns for fermionic dipolar molecules on a square optical lattice: Mean-field-theory analysis

机译:方形光学晶格上的铁离子偶极分子的密度波图:均场理论分析

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We model a system of ultracold fermionic dipolar molecules on a two-dimensional square lattice. Assuming that the molecules are in their nondegenerate hyperfine ground state, and that the dipole moment is polarized perpendicular to the plane (as in the recent experiments on ~(40)K- ~(87)Rb molecules), we approximate these molecules as spinless fermions with long-range repulsive dipolar interactions. We use mean-field theory to obtain the restricted phase diagram as a function of the filling, the strength of interaction, and the temperature. We find a number of ordered density-wave phases in the system, as well as phase separation between these phases. A Monte Carlo analysis shows that the higher-period phases are usually suppressed in the exact solution.
机译:我们在二维正方形晶格上建模一个超冷的铁离子偶极分子系统。假设分子处于非简并超细基态,并且偶极矩垂直于平面极化(如最近对((40)K-〜(87)Rb)分子的实验),我们将这些分子近似为无旋费米子具有长程排斥性偶极相互作用。我们使用平均场理论来获得受限相图,该相图是填充,相互作用强度和温度的函数。我们发现系统中有许多有序的密度波相,以及这些相之间的相分离。蒙特卡洛分析表明,在精确解中通常会抑制较高周期的相。

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