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Observation of transverse Bose-Einstein condensation via Hanbury Brown-Twiss correlations

机译:通过Hanbury Brown-Twiss相关性观察横向Bose-Einstein凝聚

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摘要

A fundamental property of a three-dimensional Bose-Einstein condensate is long-range coherence; however, in systems of lower dimensionality, not only is the long-range coherence destroyed but additional states of matter are predicted to exist. One such state is a "transverse condensate," first predicted by van Druten and Ketterle [Phys. Rev. Lett. 79, 549 (1997)], in which the gas condenses in the transverse dimensions of a highly anisotropic trap while remaining thermal in the longitudinal dimension. Here, we detect the transition from a three-dimensional thermal gas to a gas undergoing transverse condensation by probing Hanbury Brown-Twiss correlations.
机译:三维玻色-爱因斯坦凝聚物的基本特性是长距离相干性。然而,在较低维的系统中,不仅远距离相干性被破坏,而且预计还会存在其他物质状态。 van Druten和Ketterle首先预测了“横向冷凝物”。牧师79,549(1997)],其中气体在高度各向异性阱的横向尺寸上冷凝,而在纵向尺寸上保持热。在这里,我们通过探测Hanbury Brown-Twiss相关性来检测从三维热气体到经历横向冷凝的气体的过渡。

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