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首页> 外文期刊>Physical review letters >Observation of Atom Wave Phase Shifts Induced by Van Der Waals Atom-Surface Interactions
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Observation of Atom Wave Phase Shifts Induced by Van Der Waals Atom-Surface Interactions

机译:Van Der Waals原子-表面相互作用引起的原子波相移的观察

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摘要

The development of nanotechnology and atom optics relies on understanding how atoms behave and interact with their environment. Isolated atoms can exhibit wavelike (coherent) behavior with a corresponding de Broglie wavelength and phase which can be affected by nearby surfaces. Here an atom interferometer is used to measure the phase shift of Na atom waves induced by the walls of a 50 nm wide cavity. To our knowledge this is the first direct measurement of the de Broglie wave phase shift caused by atom-surface interactions. The magnitude of the phase shift is in agreement with that predicted by Lifshitz theory for a nonretarded van der Waals interaction. This experiment also demonstrates that atom waves can retain their coherence even when atom-surface distances are as small as 10 nm.
机译:纳米技术和原子光学的发展依赖于对原子如何行为以及与环境相互作用的理解。孤立的原子会表现出波状(相干)行为,并具有相应的德布罗意波长和相位,并可能受到附近表面的影响。此处,原子干涉仪用于测量由50 nm宽腔壁感应的Na原子波的相移。据我们所知,这是对由原子-表面相互作用引起的德布罗意波相移的首次直接测量。相移的幅度与Lifshitz理论预测的无延迟范德华相互作用的相符。该实验还证明,即使当原子表面距离小至10 nm时,原子波也可以保持其相干性。

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