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Bichromatic beam splitter for three-level atoms

机译:三能级原子的双色分束器

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摘要

We investigate schemes for the clean splitting of beams of three-level atoms using two standing-wave laser fields within an optical cavity. The proposed beam splitter is shown to work for atoms in the Λ ladder, and ssV configurations. For appropriate values of Rabi frequencies and detunings, we obtain a triangular type of potential for the atomic states of interest. As well as modeling the coherent evolution of the systems, we have used quantum Monte Carlo wave-function methods to model the effects of spontaneous emission on the resulting diffraction pattern, finding significant differences between the three configurations. We also investigate the limits of the Raman-Nath approximation for our systems, using the symmetric split-operator technique to include the effects of the kinetic term in the Hamiltonian. We also present the results of calculations in which the split output beams are recombined, demonstrating the expected interference for differently prepared input beams. In comparison with two-level beam splitters using a single standing wave, we obtain a superior splitting, while, in comparison with magneto-optical beam splitters, our system possesses the worthwhile practical advantages of experimental simplicity.
机译:我们研究了在光腔内使用两个驻波激光场对三能级原子束进行干净分裂的方案。所示拟议的分束器适用于Λ阶梯和ssV配置中的原子。对于适当的拉比频率和失谐值,我们获得了感兴趣的原子态的三角型势。除了对系统的相干演化进行建模外,我们还使用了量子蒙特卡罗波函数方法来对自发辐射对所得衍射图样的影响进行建模,发现这三种配置之间存在显着差异。我们还使用对称分裂算子技术来研究汉密尔顿方程中动力学项的影响,从而研究了系统的拉曼-纳斯近似的极限。我们还提供了计算结果,其中重新组合了分离的输出光束,从而证明了不同准备的输入光束的预期干扰。与使用单个驻波的两级分束器相比,我们获得了更好的分束,而与磁光分束器相比,我们的系统具有实验简单的有价值的实际优势。

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