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Spectral dependence of diffuse light dynamics in ultracold atomic Rb-85

机译:超冷原子Rb-85中散射光动力学的光谱依赖性

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摘要

We report a combined experimental and theoretical simulation of multiply scattered light dynamics in an ultracold gas of Rb-85 atoms. Measurements of the spectral dependence of the time-decay of the scattered light intensity, following pulsed excitation with near resonance radiation, reveals that the decay for long times is nearly exponential, with a decay constant that is largely independent of detuning from resonance. Monte Carlo simulations of the multiple scattering process show that, for large detunings, near resonance scattering of Fourier components of the excitation pulse plays a significant role in the effect. This interpretation is supported by the observations, and successful modelling, of beating between Rayleigh scattered light at the excitation carrier frequency with the Fourier components of the excitation pulse that overlap significantly with the atomic resonance.
机译:我们报告了Rb-85原子超冷气体中多重散射光动力学的组合实验和理论模拟。在用近共振辐射进行脉冲激发之后,散射光强度的时间衰减的光谱依赖性测量表明,长时间衰减几乎是指数的,衰减常数在很大程度上与共振衰减无关。多重散射过程的蒙特卡洛模拟表明,对于大的失谐,激发脉冲的傅立叶分量的近共振散射在该效应中起着重要作用。这种解释得到了在激发载频处的瑞利散射光与激发脉冲的傅立叶分量之间的跳动的观察和成功的建模的支持,该傅里叶分量与原子共振显着重叠。

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