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Frequency stability of a wavelength meter and applications to laser frequency stabilization

机译:波长计的频率稳定性及其在激光频率稳定中的应用

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摘要

Interferometric wavelength meters have attained frequency resolutions down to the megahertz range. In particular, Fizeau interferometers, which have no moving parts, are becoming a popular tool for laser characterization and stabilization. In this paper, we characterize such a wavelength meter using an ultrastable laser in terms of relative frequency instability sigma(y) (tau) and demonstrate that it can achieve a short-term instability sigma(y) (1s) approximate to 2 x 10(-10) and a frequency drift of order 10 MHz/day. We use this apparatus to demonstrate frequency control of a near-infrared laser, where a frequency instability below 3 x 10(-10) from 1 to 2000 s is achieved. Such performance is, for example, adequate for ion trapping and atom cooling experiments. (C) 2015 Optical Society of America
机译:干涉式波长计的频率分辨率低至兆赫兹范围。尤其是,没有活动部件的Fizeau干涉仪正成为激光表征和稳定化的流行工具。在本文中,我们根据相对频率不稳定性sigma(y)(tau)对使用超稳定激光的波长计进行了表征,并证明了它可以实现大约2 x 10的短期不稳定性sigma(y)(1s)。 (-10),频率漂移约为10 MHz /天。我们使用该设备演示近红外激光器的频率控制,其中从1到2000 s低于3 x 10(-10)的频率不稳定。这样的性能例如对于离子捕获和原子冷却实验是足够的。 (C)2015年美国眼镜学会

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