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Microcontroller-based locking in optics experiments

机译:光学实验中基于微控制器的锁定

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摘要

Optics experiments critically require the stable and accurate locking of relative phases between light beams or the stabilization of Fabry-Perot cavity lengths. Here, we present a simple and inexpensive technique based on a stand-alone microcontroller unit to perform such tasks. Easily programmed in C language, this reconfigurable digital locking system also enables automatic relocking and sequential functioning. Different algorithms are detailed and applied to fringe locking and to low- and high-finesse optical cavity stabilization, without the need of external modulations or error signals. This technique can readily replace a number of analog locking systems advantageously in a variety of optical experiments.
机译:光学实验非常需要光束之间相对相位的稳定和准确锁定,或者需要Fabry-Perot腔长度的稳定化。在这里,我们提出了一种基于独立微控制器单元的简单而廉价的技术来执行此类任务。这种可重新配置的数字锁定系统易于用C语言编程,还可以实现自动重新锁定和顺序功能。详细介绍了不同的算法,并将其应用于条纹锁定以及低和高精细光学腔的稳定性,而无需外部调制或误差信号。在各种光学实验中,该技术可以方便地替换许多模拟锁定系统。

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