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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Electromagnetically induced transparency with cold Rydberg atoms: Superatom model beyond the weak-probe approximation
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Electromagnetically induced transparency with cold Rydberg atoms: Superatom model beyond the weak-probe approximation

机译:里德堡冷原子的电磁感应透明性:超越弱探针逼近的超原子模型

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摘要

We present an improved superatom model for examining nonlinear optical responses of cold Rydberg atoms in the regime of electromagnetically induced transparency (EIT). By going beyond the weak-probe approximation, we find that several higher-order collective states should be included to correctly describe the coherent Rydberg excitation of superatoms. Otherwise, numerical results based on the simple ladder system of superatoms will contribute wrong predictions on light intensity and photon correlation of the transmitted probe field. In particular, a great photon-bunching effect will be improperly expected somewhere out of the EIT window in one dilute atomic sample. The essence of this improved superatom model lies in that it can provide reliable predictions on the nonlinear Rydberg-EIT phenomena even in dense atomic samples and may be extended to realize lossless conditional light interactions in appropriate multilevel systems exhibiting dipole blockade.
机译:我们提出了一种改进的超原子模型,用于检查冷里德堡原子在电磁感应透明性(EIT)方面的非线性光学响应。通过超越弱探针逼近,我们发现应该包括几个高阶集合态,以正确描述超原子的相干里德堡激发。否则,基于简单的超级原子阶梯系统的数值结果将对透射的探测场的光强度和光子相关性做出错误的预测。特别是,在一个稀释的原子样本中,在EIT窗口之外的某处将不恰当地预期到很大的光子聚集效应。这种改进的超原子模型的本质在于,即使在密集的原子样本中,它也可以提供关于非线性Rydberg-EIT现象的可靠预测,并且可以扩展为在表现出偶极子阻断的适当多能级系统中实现无损条件光相互作用。

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