Vibrational analysis of stabilized lasers

K. J. Hughes, A. Hati, Craig W. Nelson, David A. Howe
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引用次数: 0

Abstract

Frequency-stabilized lasers are routinely used in a variety of research and application areas relating to laser-cooled atoms. Important applications in the cold-atom regime include atomic time keeping, inertial navigation, gravitational sensing, and magnetometry. The number of applications based on frequency stabilized lasers is increasing and at the same time, there is a push to miniaturize devices base on these applications. As devices become smaller and more mobile, it will become increasingly important to be able to measure and understand the effects of vibration on the individual devices as a whole, as well as the frequency-stabilized laser subsystems. Here we present preliminary vibration studies of a lab-built laser system based on a monolithic semiconductor laser diode frequency stabilized to the D2 transition in 87Rb using FM saturated absorption spectroscopy.
稳定激光器的振动分析
频率稳定激光器通常用于与激光冷却原子有关的各种研究和应用领域。冷原子系统的重要应用包括原子计时、惯性导航、重力传感和磁强计。基于频率稳定激光器的应用越来越多,与此同时,基于这些应用的设备小型化也在不断推进。随着设备变得越来越小,移动性越来越强,能够测量和理解振动对整个单个设备以及频率稳定的激光子系统的影响将变得越来越重要。本文采用调频饱和吸收光谱法对基于单片半导体激光二极管的87Rb中D2跃迁频率稳定的实验室激光系统进行了初步的振动研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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