首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Theoretical and experimental investigation of low-noise optoelectronic system configurations for low-coherent optical signal detection
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Theoretical and experimental investigation of low-noise optoelectronic system configurations for low-coherent optical signal detection

机译:用于低相干光信号检测的低噪声光电系统配置的理论和实验研究

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摘要

In low-coherent measurement techniques two kinds of optical signal processing can be used spectral and temporal. When the temporal signal processing is used, the most critical problem is to identify the position of the central fringe in the interference fringe pattern. It is so important because this position corresponds to the zero of optical path difference and gives information about a measurand. Therefore, it is necessary to use the low-noise optical signal detection set-up in the low-coherent measurement systems. One of the most effective methods of noise-reduction in low-coherent system is using detection system in balanced configuration. In this article, authors present the designed low-coherent optical signal detection system. This system enables us to perform balanced and un-balanced detection, which allows to compare parameters of both configurations. The authors describe theoretical and experimental investigation of balanced and un-balanced low-coherent optical signal detection system.
机译:在低相干测量技术中,可以使用光谱和时间两种光信号处理。当使用时间信号处理时,最关键的问题是识别干涉条纹图案中的中央条纹的位置。这一点非常重要,因为此位置对应于光程差的零,并提供有关被测物的信息。因此,有必要在低相干测量系统中使用低噪声光信号检测装置。低相干系统中最有效的降噪方法之一是采用平衡配置的检测系统。在本文中,作者介绍了设计的低相干光信号检测系统。该系统使我们能够执行平衡和不平衡检测,从而可以比较两种配置的参数。作者描述了平衡和不平衡的低相干光信号检测系统的理论和实验研究。

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