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Thermal Phase Noise Measurements in Optical Fiber Interferometers

机译:光纤干涉仪中的热相位噪声测量

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We present measurement data of fundamental thermal noise in a 40-m fiber optic Mach-Zehnder interferometer (MZI) using 80-μm-diameter optical fiber. To extend the measurements to low frequencies (below 500 Hz), the experimental setup is carefully designed to minimize ambient noise, thermal drift, and the phase and amplitude noise of the lasers. These experimental results are compared with theoretical predictions for the magnitude of the fundamental thermal noise in fiber, due to both thermodynamic temperature fluctuations and spontaneous length fluctuations. The experimental data, using two different solid-state lasers with two different emission wavelengths (1319 and 1550 nm), is in reasonable agreement with both theories over frequencies ranging from 20 Hz to 100 kHz. In terms of strain resolution, this paper demonstrates a fundamental thermal noise limit of approximately one femtostrain/rt(Hz) for a 40-m fiber optic MZI.
机译:我们介绍了使用直径为80μm的光纤的40 m光纤马赫曾德尔干涉仪(MZI)中的基本热噪声的测量数据。为了将测量范围扩展到低频(低于500 Hz),精心设计了实验装置,以最大程度地减少环境噪声,热漂移以及激光器的相位和幅度噪声。由于热力学温度波动和自发长度波动,这些实验结果与光纤中基本热噪声的大小的理论预测值进行了比较。使用两个具有两个不同发射波长(1319和1550 nm)的不同固态激光器的实验数据与这两个理论在20 Hz至100 kHz频率范围内都合理地吻合。在应变分辨率方面,本文证明了40 m光纤MZI的基本热噪声极限约为1飞秒/ rt(Hz)。

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