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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Atom interferometry measurement of the atom-surface van der Waals interaction
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Atom interferometry measurement of the atom-surface van der Waals interaction

机译:原子表面范德华相互作用的原子干涉测量

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摘要

Using a nano-scale grid as a phase-shifting component, an atom interferometer has been utilized to study atom-surface van der Waals (VdW) interactions. We report phase shifts on the order of 0.2 rad, with a few percent uncertainty. We also report the velocity-dependent attenuation of atomic de Broglie wave amplitude that occurs in conjunction with the observed phase shifts. From these data we deduce the strength of the VdW potential and its dependence on the atom-surface separation. We discuss how our measurements can be used to set limits on the strength of non-Newtonian gravity at short length scales and we discuss the possibility of measuring the atom-surface interactions over a larger range of atom-surface distances. We also compare our results to several theoretical predictions for the VdW potential of Li near a variety of surfaces.
机译:使用纳米尺度的网格作为相移组件,原子干涉仪已被用于研究原子表面范德华(VdW)相互作用。我们报告的相移约为0.2 rad,不确定性为百分之几。我们还报告了与观察到的相移有关的原子德布罗意波振幅的速度相关衰减。根据这些数据,我们可以得出VdW电位的强度及其对原子-表面分离的依赖性。我们讨论了如何在短的长度尺度上使用我们的测量结果来设置非牛顿引力强度的极限,并且讨论了在更大范围的原子-表面距离上测量原子-表面相互作用的可能性。我们还将我们的结果与多种表面附近Li的VdW势的理论预测进行比较。

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