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Coherence properties of a continuous atom laser

机译:连续原子激光器的相干特性

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We investigate the coherence properties of an atomic beam evaporatively cooled in a magnetic guide, assuming thermal equilibrium in the quantum degenerate regime. The gas experiences two-dimensional, transverse Bose-Einstein condensation rather than a full three-dimensional condensation because of the very elongated geometry of the magnetic guide. First order and second order correlation functions of the atomic field are used to characterize the coherence properties of the gas along the axis of the guide. The coherence length of the gas is found to be much larger than the thermal de Broglie wavelength in the strongly quantum degenerate regime. Large intensity fluctuations present in the ideal Bose gas model are found to be strongly reduced by repulsive atomic interactions; this conclusion is obtained with a one-dimensional classical field approximation valid when the temperature of the gas is much higher than its chemical potential, k(B)T mu. [References: 46]
机译:我们假设在量子简并状态下达到热平衡,研究在磁导中蒸发冷却的原子束的相干特性。由于磁导的几何形状非常细长,气体会经历二维的横向Bose-Einstein冷凝,而不是完整的三维冷凝。原子场的一阶和二阶相关函数用于表征气体沿导向轴的相干性。发现气体的相干长度远大于强量子简并状态下的热德布罗意波长。理想的玻色气体模型中存在的大强度波动被排斥原子相互作用强烈地降低了。当气体温度远高于其化学势k(B)T mu 时,使用一维经典场近似即可得出该结论。 [参考:46]

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