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Using coherence properties for frequency stabilizing He-Ne laser

机译:利用相干特性稳定频率的氦氖激光器

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摘要

We have demonstrated that the frequency of the laser radiation can be stabilized by controlling its coherence properties. Theoretical analysis of the laser radiation visibility function was performed and connection with the longitudinal mode structure was established. It was established that laser emission frequency could be stabilized by controlling the visibility of interference pattern,. Calculations have shown that, in theory, stability around 4 kHz can be expected. As a proof-of-the-principle, a HeNe laser, stabilized by measurement of the interference pattern visibility in a modified Michelson interferometer, was built. Stabilization was performed by temperature control of the laser tube in a digital feedback loop and total frequency variation of 3 MHz was obtained. Possible improvements of the experimental setup, together with some applications of multimode stabilized lasers are discussed.
机译:我们已经证明,可以通过控制其相干特性来稳定激光辐射的频率。对激光辐射能见度函数进行了理论分析,并建立了与纵向模式结构的联系。已经确定可以通过控制干涉图的可见度来稳定激光发射频率。计算表明,从理论上讲,可以预期大约4 kHz的稳定性。作为原理的证明,制造了HeNe激光器,该激光器通过在改进的迈克尔逊干涉仪中测量干涉图的可见性来稳定。通过在数字反馈回路中对激光管进行温度控制来实现稳定,并获得3 MHz的总频率变化。讨论了实验装置的可能改进,以及多模稳定激光器的一些应用。

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