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Forces between a Single Atom and Its Distant Mirror Image

机译:单原子与其远镜之间的力

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摘要

An excited-state atom whose emitted light is backreflected by a distant mirror can experience trapping forces, because the presence of the mirror modifies both the electromagnetic vacuum field and the atom's own radiation reaction field. We demonstrate this mechanical action using a single trapped barium ion. We observe the trapping conditions to be notably altered when the distant mirror is translated across an optical wavelength. The well-localized barium ion enables the spatial dependence of the forces to be measured explicitly. The experiment has implications for quantum information processing and may be regarded as the most elementary optical tweezers.
机译:激发态的原子发出的光被远处的反射镜反射,会受到俘获力,因为反射镜的存在会改变电磁真空场和原子自身的辐射反应场。我们展示了使用单个捕获的钡离子的这种机械作用。我们观察到,当远距镜在一个光学波长上平移时,捕获条件将发生明显变化。钡离子分布良好,可以明确测量力的空间依赖性。该实验对量子信息处理有影响,可以被认为是最基本的光镊。

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