Analytic estimate of thermal noise in sphere optical reference cavities

Guanjun Xu, Linbo Zhang, Jie Liu, Jing Gao, D. Jiao, Long Chen, Q. Zang, R. Dong, Tao Liu
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Abstract

Thermal noise in optical cavities sets a fundamental limit to the frequency instability of ultra-stable lasers. We estimate the contribution of the sphere spacer using the new Equation based on Levin's formulation of the fluctuation-dissipation-theorem (FDT) and elastic strain energy. Focusing on the sphere spacer geometry, the estimate and simulation of the thermal noise have been carried out. We find that thermal noise of the sphere spacer behaves different from cylindrical cavities. The estimate for the sphere spacer by the new Equation agrees better with simulation compared with previous equations.
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球面光学参考腔热噪声的解析估计
光学腔中的热噪声对超稳定激光器的频率不稳定性有一个基本的限制。我们利用基于Levin波动耗散定理(FDT)和弹性应变能公式的新方程来估计球面间隔器的贡献。针对球面间隔器的几何形状,进行了热噪声的估计和仿真。我们发现球形间隔器的热噪声表现与圆柱腔不同。与以前的方程相比,新方程对球面间隔器的估计与仿真结果更吻合。
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