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对环境温度波动低灵敏度的光学参考腔的热分析。

Thermal analysis of optical reference cavities for low sensitivity to environmental temperature fluctuations.

作者信息

Dai Xiaojiao, Jiang Yanyi, Hang Chao, Bi Zhiyi, Ma Longsheng

出版信息

Opt Express. 2015 Feb 23;23(4):5134-46. doi: 10.1364/OE.23.005134.

Abstract

The temperature stability of optical reference cavities is significant in state-of-the-art ultra-stable narrow-linewidth laser systems. In this paper, the thermal time constant and thermal sensitivity of reference cavities are analyzed when reference cavities respond to environmental perturbations via heat transfer of thermal conduction and thermal radiation separately. The analysis as well as simulation results indicate that a reference cavity enclosed in multiple layers of thermal shields with larger mass, higher thermal capacity and lower emissivity is found to have a larger thermal time constant and thus a smaller sensitivity to environmental temperature perturbations. The design of thermal shields for reference cavities may vary according to experimentally achievable temperature stability and the coefficient of thermal expansion of reference cavities. A temperature fluctuation-induced length instability of reference cavities as low as 6 × 10(-16) on a day timescale can be achieved if a two-layer thermal shield is inserted between a cavity with the coefficient of thermal expansion of 1 × 10(-10) /K and an outer vacuum chamber with temperature fluctuation amplitude of 1 mK and period of 24 hours.

摘要

在先进的超稳定窄线宽激光系统中,光学参考腔的温度稳定性至关重要。本文分别分析了参考腔通过热传导和热辐射的热传递对环境扰动做出响应时的热时间常数和热灵敏度。分析及仿真结果表明,封闭在多层具有较大质量、较高热容量和较低发射率的热屏蔽中的参考腔具有较大的热时间常数,因此对环境温度扰动的灵敏度较小。参考腔热屏蔽的设计可能会根据实验可实现的温度稳定性和参考腔的热膨胀系数而有所不同。如果在热膨胀系数为1×10(-10)/K的腔与温度波动幅度为1 mK且周期为24小时的外部真空腔之间插入双层热屏蔽,则在一天的时间尺度上可以实现参考腔由温度波动引起的长度不稳定性低至6×10(-16) 。

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