Contribution of Different Noise Sources to the Relative Instability of Laser Systems Stabilized by External Silicon Cavities

D. Kryuchkov, G. Vishnyakova, K. Khabarova, K. Kudeyarov, N. Zhadnov, N. Kolachevsky
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Abstract

Here we consider creation of laser systems stabilized by external macroscopic monolithic Fabry – Perot cavities made of single-crystalline silicon operating at cryogenic temperatures. Fundamental thermal noise floor for fractional frequency instability was evaluated with its dependency on cavity’s spacer, mirror’s substrate and coatings material. Silicon cavities with dielectric SiO2 /Ta2 O5 and crystalline GaAs/InGaAs mirror coatings were created, its finesse at room temperatures was investigated. Two ultra-high vacuum optical cryostats were developed. Two ultra-stable laser systems based on cavities with dielectric mirrors were assembled. Comparison scheme via beat signal frequency counting was implemented for the characterization purpose. Different noise sources presenting at assembled systems are considered. Its impact to relative frequency instability of our laser systems is being explored.
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不同噪声源对外部硅腔稳定激光系统相对不稳定性的影响
在这里,我们考虑创建由在低温下工作的单晶硅制成的外部宏观单片法布里-佩罗腔稳定的激光系统。分析了分频不稳定性的基本热噪声基底与腔体间隔层、反射镜衬底和涂层材料的关系。制备了具有介电SiO2 / ta2o5和晶体GaAs/InGaAs镜面涂层的硅腔,并对其在室温下的精细度进行了研究。研制了两个超高真空光学低温恒温器。组装了两个基于介质反射腔的超稳定激光系统。为了进行表征,采用了基于节拍信号频率计数的比较方案。考虑了组合系统中出现的不同噪声源。它对我们的激光系统的相对频率不稳定性的影响正在被探索。
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