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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Anomalous light shift through quantum jumps in quasiresonant Rayleigh scattering
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Anomalous light shift through quantum jumps in quasiresonant Rayleigh scattering

机译:准共振瑞利散射中的量子跃迁引起的异常光偏移

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An anomalous light shift in the precession of a ground-state Zeeman coherence is observed: The Larmor frequency increases with the strength of a drive that is blue (red) detuned from a transition out of the lower (upper) energy level. Our measurements are made on ~(85)Rb atoms traversing an optical cavity containing a few photons; shifts as large as 1% per photon are recorded. The anomalous shift arises from an accumulation of phase driven by quantum jumps. It is stochastic and accompanied by broadening.
机译:观察到基态塞曼相干进动中的异常光偏移:拉莫尔频率随着从较低(较高)能级跃迁而消退的蓝色(红色)驱动器的强度增加而增加。我们的测量是通过〜(85)Rb原子穿过包含几个光子的光腔进行的;记录每个光子最大1%的位移。异常位移是由量子跃迁驱动的相位累积引起的。它是随机的,并伴随着扩大。

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