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Optical Frequency References for Laser Interferometry

机译:激光干涉测量的光学频率参考

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Optical frequency references for laser standards based on molecular iodine absorption cells represent one of the most used tool for frequency stabilization of lasers operating in a visible spectral range. In the industry oriented laser measurements and similar laser interferometry applications performed at atmospheric conditions, a refractive index of air plays a role of main uncertainty contributor. In these cases there is no need to use technologically complicated and expensive iodine references made of pure fused silica with precise pressure control of absorpbing media. A set of iodine cells made of borosilicate glass was filled with certain amount of absorbing media to define the saturation point of iodine inside. A combination of these two approaches (pyrex material and controlled saturation pressure of iodine) allows us to simplify the laser stabilization setup (there is no need of additional iodine pressure level control) and reduce the overall reference's costs with ensuring of sufficient frequency stability of the system at the same time. Spectral properties of manufactured cells were tested by hyperfine transitions linewidth measurement and comparison with results from traditional fused silica cells was done to investigate the long-term iodine purity inside the references. As the transitions linewidth method shows a very high sensitivity to iodine purity level, this method is proposed to be an alternative approach in investigation of contamination in iodine absorption cells where traditionally used techniques - laser induced fluorescence (LIF) and absolute frequency shifts measurement - can not be used.
机译:基于分子碘吸收电池的激光标准光学频率参考代表了在可见光谱范围内操作的激光器频率稳定的最常用工具之一。在行业导向的激光测量和类似的激光干涉测量应用在大气条件下进行,空气的折射率起到主要不确定性贡献者的作用。在这些情况下,不需要使用具有纯熔融二氧化硅的技术复杂和昂贵的碘参考,其具有吸收介质的精确压力控制。将由硼硅酸盐玻璃制成的一组碘细胞填充有一定量的吸收介质以限定内部碘的饱和点。这两种方法的组合(碘的Pyrex材料和受控饱和压力)允许我们简化激光稳定设置(不需要额外的碘压力水平控制),并通过确保足够的频率稳定性来降低整体参考成本系统同时。通过高血清过渡对制造细胞的光谱性能进行较线宽测量,并与传统熔融二氧化硅细胞的结果进行比较,以研究参考文献内的长期碘纯度。随着过渡线宽方法显示对碘纯度的敏感性非常高,该方法被提出是碘吸收细胞污染的替代方法,其中传统上使用的技术 - 激光诱导荧光(LiF)和绝对频率变换测量 - 可以不使用。

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