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Superradiant scattering of light from a Bose-Einstein condensate of rarefied atomic gases at the small detuning of resonance

机译:来自共振原子的小失谐的稀有原子气体的玻色-爱因斯坦凝聚物的光的超辐射散射

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Based on the earlier model, the superradiant Rayleigh scattering of the high-intensity short light pulses by the Bose-Einstein condensate of rubidium vapor is studied. It is demonstrated that only six states with a certain momentum are filled when the resonance detuning is about the Rabi frequency. The first two states describe the atomic motion along the condensate due to absorption, whereas the remaining four states describe the atomic motions at angles of 45° and 135° to the condensate axis owing to the reemission of the photon. The condensate pulsations between the state with zero momentum and the last four states are revealed. The corresponding shape of the coherent Rayleigh pulse is found for various resonance detunings.
机译:基于较早的模型,研究了vapor蒸气的玻色-爱因斯坦凝聚物对高强度短光脉冲的超辐射瑞利散射。结果表明,当共振失谐约为拉比频率时,只有六个具有一定动量的状态被填充。前两个状态描述了由于吸收而沿着冷凝物的原子运动,而其余四个状态描述了由于光子的再发射而相对于冷凝物轴成45°和135°角的原子运动。揭示了零动量状态与最后四个状态之间的凝结脉动。对于各种谐振失谐,找到相干瑞利脉冲的相应形状。

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