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Fluorescence of a highly collimated atomic cesium beam: theory and experiment

机译:高度准直的原子铯束的荧光:理论和实验

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摘要

We describe our system for producing a dense well collimated atomic cesium beam. Our motivation for constructing this system is to perform high resolution laser induced spectroscopy. The two stage oven system consists of a nozzle and reservoir. An array of stainless steel capillary tubes forms the exit port of the nozzle. Additional collimation of the atomic beam is achieved with a stack of microscope cover slips and spacers, giving a maximum beam divergence of 13.6 mrad. The heterodyne beat note between two diode lasers provides the frequency calibration for high resolution fluorescence spectra. Fluorescence spectra with high signal to noise ratio are accurately described by a simple theoretical model that gives a residual Doppler width of 2.3(1) MHz in agreement with the geometrical constraints of the collimator.
机译:我们描述了用于产生密集的准直原子铯束的系统。我们构建此系统的动机是执行高分辨率激光诱导光谱。两级烤箱系统由喷嘴和储液器组成。一系列不锈钢毛细管形成喷嘴的出口。原子束的额外准直是通过一堆显微镜盖玻片和垫片实现的,最大束发散度为13.6 mrad。两个二极管激光器之间的外差拍音为高分辨率荧光光谱提供了频率校准。通过简单的理论模型可以准确描述具有高信噪比的荧光光谱,该模型给出的残余多普勒宽度为2.3(1)MHz,与准直仪的几何约束一致。

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