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Bose-Einstein transition in a dilute interacting gas

机译:稀相互作用气体中的玻色-爱因斯坦跃迁

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We study the effects of repulsive interactions on the critical density for the Bose-Einstein transition in a homogeneous dilute gas of bosons. First, we point out that the simple mean field approximation produces no change in the critical density, or critical temperature, and discuss the inadequacies of various contradictory results in the literature. Then, both within the frameworks of Ursell operators and of Green's functions, we derive self-consistent equations that include correlations in the system and predict the change of the critical density. We argue that the dominant contribution to this change can be obtained within classical field theory and show that the lowest order correction introduced by interactions is linear in the scattering length, a, with a positive coefficient. Finally, we calculate this coefficient within various approximations, and compare with various recent numerical estimates.
机译:我们研究了排斥相互作用对玻色均匀稀释气体中玻色-爱因斯坦跃迁的临界密度的影响。首先,我们指出简单的平均场近似不会使临界密度或临界温度发生变化,并讨论了文献中各种矛盾结果的不足之处。然后,在Ursell算子和Green函数的框架内,我们得出包含系统相关性的自洽方程,并预测临界密度的变化。我们认为,可以在经典场论中获得对此变化的主要贡献,并表明相互作用引入的最低阶校正在散射长度a中是线性的,具有正系数。最后,我们在各种近似值内计算该系数,并与各种最新的数值估计值进行比较。

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