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Superfluidity and Bose-Einstein Condensation in a Dipolar Bose Gas with Weak Disorder

机译:弱性偶极玻色气体中的超流态和玻色-爱因斯坦凝聚

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We investigate the properties of a three-dimensional homogeneous dipolar Bose gas in a weak random potential with a Gaussian correlation function at finite temperature. Using the Bogoliubov theory (beyond the mean field), we calculate the superfluid and the condensate fractions in terms of the interaction strength on the one hand and in terms of the width and the strength of the disorder on the other. The influence of the disordered potential on the second-order correlation function, the ground state energy, and the chemical potential is also analyzed. We find that for fixed strength and correlation length of the disorder potential, the dipole-dipole interaction leads to modify both the condensate and the superfluid fractions. We show that for a strong disorder strength the condensed fraction becomes larger than the superfluid fraction. We discuss the effect of the trapping potential on a disordered dipolar Bose in the regime of large number of particles.
机译:我们研究了在有限温度下具有高斯相关函数的弱随机势中的三维均质偶极玻色气体的性质。使用Bogoliubov理论(超出平均场),我们一方面根据相互作用强度,另一方面根据无序的宽度和强度来计算超流体和凝结水分数。还分析了无序电势对二阶相关函数,基态能量和化学势的影响。我们发现,对于无序电位的固定强度和相关长度,偶极-偶极相互作用会同时改变凝结水和超流体馏分。我们显示出对于强无序强度,冷凝分数变得大于超流体分数。我们讨论了在大量粒子的情况下,捕获势对无序偶极玻色的影响。

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