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Detrimental consequences of small rapid laser fluctuations on stimulated Raman adiabatic passage

机译:小的快速激光波动对受激拉曼绝热通道的不利影响

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摘要

We discuss the detrimental effect of small rapid random fluctuations of laser-field amplitude and phase upon the efficiency of stimulated Raman adiabatic passage (STIRAP). Such fluctuations typically accompany the laser stabilization procedures that produce nearly monochromatic light on top of a much broader bandwidth Lorentz-profile pedestal which may carry only a few percent or less of the total power. As we will show, their effects differ qualitatively from the fluctuations that have hitherto been considered (for example, phase diffusion). We present analytic expressions for the population transfer efficiency of STIRAP when limited by stochastic fluctuations of this type. These expressions show, in contrast to situations discussed in the past in which population transfer improves with increasing peak Rabi frequencies, that for the weak broadband noise that accompanies a strong narrow-spectral component, there is an optimum value for the peak Rabi frequency and that the effect of fluctuations, although small, cannot be entirely eliminated in practice. The mission of the current work is to point out that, under the given circumstances, efforts in experiments trying to overcome the detrimental consequences of fluctuations by increasing the intensity, which is the intuitively proper approach, will not be successful.
机译:我们讨论了激光场幅度和相位小的快速随机波动对受激拉曼绝热通道(STIRAP)效率的不利影响。这种波动通常伴随着激光稳定程序,该稳定程序会在带宽更大的洛伦兹轮廓基座上产生几乎单色的光,该基座可能仅承载总功率的百分之几或更少。正如我们将显示的,它们的影响与迄今考虑的波动(例如,相位扩散)在质量上存在差异。当受到这种随机波动的限制时,我们提出了STIRAP的人口转移效率的解析表达式。与过去讨论的人口迁移随拉比峰值频率的增加而改善的情况相反,这些表达式表明,对于伴随强窄谱分量的弱宽带噪声,拉比峰值频率有一个最佳值,并且波动的影响虽然很小,但实际上无法完全消除。当前工作的任务是指出,在给定的情况下,尝试通过增加强度来克服波动的不利后果的实验努力将是不成功的,这是直观上合适的方法。

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