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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Excitation of strongly interacting moving Rydberg atoms by photon recoil momentum
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Excitation of strongly interacting moving Rydberg atoms by photon recoil momentum

机译:光子反冲动量强烈互动移动梁原子的激发

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摘要

Based on the fact that an ensemble of moving Rydberg atoms in two counterpropagating laser beams in the limit of complete dipole blocking is isomorphic to a Jaynes-Cummings model, a scheme for robust and efficient excitation of atomic Rydberg states is proposed. It is shown that the Doppler frequency shifts play an important role in atomic population transfer processes. The suggested method can be employed to detect the symmetric entangled states and paves the way to preparing entangled states with a single excited atom in a Rydberg state. It is shown that this process is robust with respect to parameter fluctuations, such as the laser pulse area, the relative spatial offset (the delay) of the laser beams and the number of atoms.
机译:基于以下事实:在完全偶极阻断的两个反向激光束中移动rydberg原子的集合是jaynes-cummings模型的同性,提出了一种用于原子rydberg状态的鲁棒和有效激发的方案。 结果表明,多普勒频率变化在原子群体转移过程中起重要作用。 建议的方法可以采用来检测对称纠缠的状态,并铺平了在Rydberg状态下用单一兴奋原子制备缠结状态的方式。 结果表明,该过程对参数波动(例如激光脉冲区域),激光脉冲区域的相对空间偏移(延迟)和原子数的相对空间偏移(延迟)是鲁棒的。

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