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Observation of phase variation within stationary light pulses inside a cold atomic medium

机译:观察冷原子介质内固定光脉冲内的相位变化

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摘要

The successful formation of stationary light pulses in a cold atomic medium was demonstrated recently. However, unlike in hot media, a detuning between the counterpropagating fields had to be applied. Here we demonstrate that a significant nonuniform phase variation can be induced during a period of stationary light owing to off-resonantly driven transitions. The experimental results are in good agreement with theoretical predictions for media of low optical depth. For media of high optical depth the numerical simulations indicate that such phase variation becomes negligible. Thus stationary light based on this coupling scheme could be used for possible future applications in quantum information processing.
机译:最近证明了在冷原子介质中成功形成平稳的光脉冲。但是,与热媒体不同,必须在反向传播场之间应用失谐。在这里,我们证明了由于非共振驱动的跃迁,在静止光的周期内会引起明显的不均匀相位变化。实验结果与低光学深度介质的理论预测吻合良好。对于高光学深度的介质,数值模拟表明这种相位变化可以忽略不计。因此,基于该耦合方案的静止光可用于量子信息处理中可能的未来应用。

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