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Range-resolved interferometric signal processing using sinusoidal optical frequency modulation

机译:使用正弦光频率调制的距离分辨干涉信号处理

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摘要

A novel signal processing technique using sinusoidal optical frequency modulation of an inexpensive continuous-wave laser diode source is proposed that allows highly linear interferometric phase measurements in a simple, self-referencing setup. Here, the use of a smooth window function is key to suppress unwanted signal components in the demodulation process. Signals from several interferometers with unequal optical path differences can be multiplexed, and, in contrast to prior work, the optical path differences are continuously variable, greatly increasing the practicality of the scheme. In this paper, the theory of the technique is presented, an experimental implementation using three multiplexed interferometers is demonstrated, and detailed investigations quantifying issues such as linearity and robustness against instrument drift are performed.
机译:提出了一种使用正弦波光频率调制的廉价连续波激光二极管源的新型信号处理技术,该技术可在简单的自参考设置中实现高度线性的干涉式相位测量。在此,使用平滑窗口功能是抑制解调过程中不需要的信号分量的关键。可以复用来自多个干涉仪的光程差不相等的信号,并且与现有技术相比,光程差是连续可变的,大大提高了该方案的实用性。本文介绍了该技术的原理,演示了使用三个多路复用干涉仪的实验实现,并对量化问题(例如线性度和针对仪器漂移的鲁棒性)进行了详细的研究。

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