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A universal matter-wave interferometer with optical ionization gratings in the time-domain

机译:一个普遍的物质波干涉仪在时域光学电离光栅

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摘要

Matter-wave interferometry with atoms and molecules has attracted a rapidly growing interest throughout the last two decades both in demonstrations of fundamental quantum phenomena and in quantum-enhanced precision measurements. Such experiments exploit the non-classical superposition of two or more position and momentum states which are coherently split and rejoined to interfere-.Here, we present the experimental realization of a universal near-field interferometer built from three short-pulse single-photon ionization gratings,. We observe quantum interference of fast molecular clusters, with a composite de Broglie wavelength as small as 275 fm. Optical ionization gratings are largely independent of the specific internal level structure and are therefore universally applicable to different kinds of nanoparticles, ranging from atoms to clusters, molecules and nanospheres. The interferometer is sensitive to fringe shifts as small as a few nanometers and yet robust against velocity-dependent phase shifts, since the gratings exist only for nanoseconds and form an interferometer in the time-domain.
机译:在过去的二十年中,使用原子 和分子 进行的物质波干涉术在基本量子现象的演示和量子增强的精密测量中都引起了人们的快速关注。这样的实验利用了两个或多个位置和动量状态的非经典叠加,这些位置和动量状态被连贯地分裂并重新结合以干涉-。在这里,我们展示了一种由三个构成的通用近场干涉仪的实验实现短脉冲单光子电离光栅。我们观察到快速分子簇的量子干涉,其复合de Broglie波长小至275 fm。光学电离光栅在很大程度上不依赖于特定的内部能级结构,因此普遍适用于从原子到簇,分子和纳米球的各种纳米粒子。干涉仪对小至几纳米的条纹位移敏感,但对速度相关的相移却很鲁棒,因为光栅仅存在几纳秒,并且在时域中形成干涉仪。

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