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Optical and evaporative cooling of caesium atoms in the gravito-optical surface trap

机译:重力光学表面阱中铯原子的光学和蒸发冷却

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We report on cooling of an atomic caesium gas closely above an evanescent-wave atom mirror. At high densities, optical cooling based on inelastic reflections is found to be limited by a density-dependent excess temperature and trap loss due to ultracold collisions involving repulsive molecular states. Nevertheless, very good starting conditions for subsequent evaporative cooling are obtained. Our first evaporation experiments show a temperature reduction from 10 muK down to 300 nK along with a gain in phase-space density of almost two orders of magnitude. [References: 35]
机译:我们报告了在van逝波原子镜上方紧邻的原子铯气体的冷却。在高密度下,发现基于非弹性反射的光学冷却受到与密度有关的过高温度和由于涉及排斥分子态的超冷碰撞而导致的陷阱损失的限制。然而,获得了用于随后的蒸发冷却的非常好的起始条件。我们的第一个蒸发实验表明,温度从10 muK降低到300 nK,相空间密度几乎增加了两个数量级。 [参考:35]

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