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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Cavity QED nondemolition measurement scheme using quantized atomic motion
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Cavity QED nondemolition measurement scheme using quantized atomic motion

机译:使用量化原子运动的腔体QED非拆除测量方案

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Considering ultracold atoms traversing a high-Q Fabry-Perot cavity, we theoretically demonstrate a quantum nondemolition measurement of the photon number. This fully quantum mechanical approach may be understood utilizing concepts as effective mass and group velocity of the atom. The various photon numbers induce a splitting of the atomic wave packet, and a time-of-flight measurement of the atom thereby reveals the photon number. While repeated atomic measurements increase the efficiency of the protocol, it is shown that by considering long interaction times only a few atoms are needed to resolve the photon number with almost perfect accuracy.
机译:考虑到超冷原子横穿高Q Fabry-Perot腔,我们从理论上证明了光子数的量子非爆破测量。可以利用概念作为原子的有效质量和群速度来理解这种全量子力学方法。各种光子数引起原子波包的分裂,因此原子的飞行时间测量揭示了光子数。尽管重复的原子测量提高了协议的效率,但事实表明,通过考虑较长的相互作用时间,仅需要几个原子即可以几乎完美的精度解析光子数。

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