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Coupling of four-wave mixing and Raman scattering by ground-state atomic coherence

机译:基态原子相干耦合四波混频和拉曼散射

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摘要

We demonstrate coupling of light resonant to transition between two excited states of rubidium and long-lived ground-state atomic coherence. In our proof-of-principle experiment a nonlinear process of four-wave mixing is used to achieve light emission proportional to independently prepared ground-state atomic coherence. Strong correlations between stimulated Raman-scattering light heralding the generation of ground-state coherence and the four-wave mixing signal are measured and shown to survive the storage period, which is promising in terms of quantum memory applications. The process is characterized as a function of laser detunings.
机译:我们证明光共振耦合到transition的两个激发态与长寿命基态原子相干之间的跃迁。在我们的原理验证实验中,使用四波混频的非线性过程来实现与独立准备的基态原子相干成正比的光发射。测量了预示基态相干性的受激拉曼散射光与四波混频信号之间的强相关性,并显示出它在存储期间还可以保存,这在量子存储应用方面是有前途的。该过程的特征在于激光失谐。

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