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首页> 外文期刊>Applied optics >Far off-resonance laser frequency stabilization using multipass cells in Faraday rotation spectroscopy
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Far off-resonance laser frequency stabilization using multipass cells in Faraday rotation spectroscopy

机译:在法拉第旋转光谱学中使用多通道电池实现远共振激光频率稳定

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摘要

We propose a far off-resonance laser frequency stabilization method by using multipass cells in Rb Faraday rotation spectroscopy. Based on the detuning equation, if multipass cells with several meters optical path length are used in the conventional Faraday spectroscopy, the detuning of the lock point can be extended much further from the alkali metal resonance. A plate beam splitter was used to generate two different Faraday signals at the same time. The transmitted optical path length was L = 50 mm and the reflected optical path length was 2L = 100 mm. When the optical path length doubled, the detuning of the lock points moved further away from the atomic resonance. The temperature dependence of the detuning of the lock point was also analyzed. A temperature-insensitive lock point was found near resonance when the cell temperature was between 110 degrees C and 130 degrees C. We achieved an rms fluctuation of 0.9 MHz/23 h at a detuning of 0.5 GHz. A frequency drift of 16 MHz/h at a detuning of -5.6 GHz and 4 MHz/h at a detuning of -5.2 GHz were also obtained for the transmitted and reflected light Faraday signal. (C) 2016 Optical Society of America
机译:我们提出了一种在Rb法拉第旋转光谱学中使用多通道单元的非共振激光频率稳定方法。基于失谐方程,如果在常规的法拉第光谱中使用光程长为几米的多通道电池,则锁定点的失谐可以从碱金属共振中进一步扩展。平板分束器用于同时生成两个不同的法拉第信号。透射光路长度为L = 50mm,反射光路长度为2L = 100mm。当光路长度加倍时,锁定点的失谐进一步远离原子共振。还分析了锁定点失谐的温度依赖性。当电池温度在110摄氏度和130摄氏度之间时,发现对温度不敏感的锁定点接近共振。在0.5 GHz的失谐下,我们获得了0.9 MHz / 23 h的均方根波动。对于透射和反射的法拉第信号,还获得了-5.6 GHz失谐下16 MHz / h的频率漂移和-5.2 GHz失谐下4 MHz / h的频率漂移。 (C)2016美国眼镜学会

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