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Adaptive time-domain filtering for real-time spectral discrimination in a Michelson interferometer

机译:自适应时域滤波,用于迈克尔逊干涉仪中的实时光谱识别

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摘要

We present a method of spectral discrimination that employs time-domain processing instead of the typical frequency-domain analysis and implement the method in a Michelson interferometer with a nonlinear mirror scan. The technique yields one analog output value per scan instead of a complete interferogram by directly filtering a measured scan with a reference function in the time domain. Such a procedure drastically reduces data-processing requirements downstream. Additionally, using prerecorded interferograms as references eliminates the need to compensate for scan nonlinearities, which broadens the field of usable components for implementation in miniaturized sensing systems. With our efficient use of known spectral signatures, we demonstrate real-time discrimination of 633- and 663-nm laser sources with a mirror scan length of 1 μm, compared with the Rayleigh criterion of 7 μm.
机译:我们提出一种采用时域处理而不是典型的频域分析的频谱鉴别方法,并在带有非线性镜像扫描的迈克尔逊干涉仪中实现该方法。该技术通过在时域中使用参考函数直接对测量的扫描进行滤波,从而每次扫描产生一个模拟输出值,而不是完整的干涉图。这样的过程极大地减少了下游的数据处理需求。另外,使用预记录的干涉图作为参考消除了补偿扫描非线性的需要,这扩大了在小型感测系统中实现的可用组件的领域。通过有效利用已知的光谱特征,我们证明了对Mirror扫描长度为1μm的633和663 nm激光源的实时识别,而Rayleigh判据为7μm。

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