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A simple and low-cost setup for part per billion level frequency stabilization and characterization of red He-Ne laser
Published 19 Feb 2022 in physics.ins-det, physics.chem-ph, and physics.optics | (2202.09577v2)
Abstract: This work describes the frequency stabilization of a dual longitudinal mode, red (632.8 nm) He-Ne laser, implemented using a low-cost microcontroller and its performance characterization using a simple interferometric method. Our studies demonstrate that frequency stability up to 0.42 MHz (3, 17 hours) can be achieved using this set up. This simple and low-cost system can serve as an excellent part per billion level frequency reference for several high resolution spectroscopy based applications.
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