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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Paired-atom laser beams created via four-wave mixing
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Paired-atom laser beams created via four-wave mixing

机译:通过四波混合产生的成对原子激光束

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摘要

A method to create paired-atom laser beams from a metastable helium atom laser via four-wave mixing is demonstrated. Radio-frequency outcoupling is used to extract atoms from a Bose-Einstein condensate near the center of the condensate and initiate scattering between trapped and untrapped atoms. The unequal strengths of the interactions for different internal states allows an energy-momentum resonance which leads to the creation of pairs of atoms scattered from the zero-velocity condensate. The resulting scattered beams are well separated from the main atom laser in the two-dimensional transverse atom laser profile. Numerical simulations of the system are in good agreement with the observed atom laser spatial profiles and indicate that the scattered beams are generated by a four-wave mixing process, suggesting that the beams are correlated.
机译:演示了一种通过四波混频从亚稳态氦原子激光器产生成对原子激光束的方法。射频外耦合用于从冷凝物中心附近的Bose-Einstein冷凝物中提取原子,并引发被俘获和未俘获原子之间的散射。对于不同的内部状态,相互作用的强度不相等,导致能量动量共振,从而导致从零速度冷凝物散射的成对原子的产生。所产生的散射光束在二维横向原子激光轮廓中与主原子激光完全分离。该系统的数值模拟与观察到的原子激光器的空间轮廓非常吻合,表明散射光束是通过四波混合过程产生的,表明光束是相关的。

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