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Description of Bose-Einstein condensate of cold gas in interaction through virtual states of non-condensate atomic components

机译:通过无缩合原子成分的虚拟状态描述冷气的Bose-einstein冷气凝结物

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We study the nonlinear interaction between two species of Bose gases having a large mass imbalance. It is presented the situation, when at low temperature, one of gas component, with smallest mass, is Bose-Einstein condensed, while the other gas is not. We show that the new interaction Hamiltonian with temperature dependent potential part takes into account all binary exchange energy between the atoms of the smallest mass component through the virtual states of non-condensate components. The modification of the traditional phase transition representation of the number of atoms in the condensate as a function of the temperature is described by an anomaly in the low temperature branch of this dependence. This anomaly have the tendency of the increasing of the numbers of atoms in condensate with increasing of temperature for a small value of the relative parameter T/T-c, where T-c is the critical temperature of the phase transition. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们研究了大量不平衡大的两个瓶子气体之间的非线性相互作用。 呈现出这种情况,当在低温下,气体成分之一,具有最小的质量,是浓缩的,而其他气体则不是。 我们表明,新的相互作用Hamiltonian具有温度相关的潜在部分,通过虚拟状态通过非冷凝物组分的虚拟状态考虑了最小质量组分的原子之间的所有二进制交换能量。 通过这种依赖的低温分支的异常描述了作为温度的函数的缩合物中原子数的传统相转变表示的改变。 该异常随着相对参数T / T-C的少值的增加,该异常具有增加的凝结物中的原子数量的趋势,其中T-C是相变的临界温度。 (c)2018年elestvier b.v.保留所有权利。

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