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Contribution of Thermal Noise to Frequency Stability of Rigid Optical Cavity via Hertz-Linewidth Lasers

机译:赫兹线宽激光器对热噪声对刚性光腔频率稳定性的贡献

摘要

We perform detailed studies of state-of-the-art laser stabilization to high finesse optical cavities, revealing fundamental mechanical thermal noise-related length fluctuations. We compare the frequency noise of lasers tightly locked to the resonances of a variety of rigid Fabry-Perot cavities of differing lengths and mirror substrate materials. The results are in agreement with the theoretical model proposed in K. Numata, A. Kemery, and J. Camp [Phys. Rev. Lett. 93, 250602 (2004)]. The results presented here on the fundamental limits of FP references will impact planning and construction of next generation ultrastable optical cavities.
机译:我们对最先进的激光稳定技术进行了详细的研究,以稳定高精细的光学腔,揭示了与机械热噪声相关的基本长度波动。我们将紧密锁定的激光器的频率噪声与不同长度和镜面基板材料的各种刚性Fabry-Perot腔的共振进行比较。结果与K. Numata,A。Kemery和J.Camp [Phys。牧师93,250602(2004)]。此处介绍的有关FP参考的基本限制的结果将影响下一代超稳定光学腔的规划和构建。

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