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An optical fiber interferometric system for non-contact measurement of atmospheric optical turbulence

机译:一种用于大气光学湍流非接触式测量的光纤干涉系统

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Optical turbulence degrades the quality of laser beam propagation and the quality of the image of optical system, limiting the spatial resolution that can be obtained. A novel single-air-gap fiber optical interferometric system useful for non-contact measurement of the fine structure of optical turbulence is presented. The main idea of this system is based on the application of a specially constructed optical fiber Mach-Zehnder interferometer to measure the phase fluctuations effected by the random fluctuations of refractive index in the turbulent atmosphere. The light source is a long coherence length infrared laser operating at the wavelength of 1.31μm and the optical path exposed to the atmosphere can be adjusted to a most suitable value according to the operational environment. Theoretical estimation illustrates that the system can measure the minimal atmospheric refractive index fluctuation up to 10~(-10) during a 2cm propagation path. It is easy to have a calibration of the system and the result shows that the voltage refractive index sensitivity is about 2.1x10~(-6) V~(-1). The system is integrated and well fixed in a burly airproof box with only the sensing arm exposed to the air. It follows that the system is suitable for the measurement of atmospheric turbulence over land and ocean surfaces.
机译:光学湍流降低了激光束传播的质量和光学系统图像的质量,从而限制了可获得的空间分辨率。提出了一种新颖的单气隙光纤干涉系统,可用于非接触式测量光学湍流的精细结构。该系统的主要思想是基于特殊构造的光纤马赫曾德尔干涉仪的应用,以测量由湍流大气中折射率的随机波动引起的相位波动。光源是长相干长度的红外激光,工作波长为1.31μm,可以根据操作环境将暴露于大气的光路调整为最合适的值。理论估计表明,该系统可以测量2cm传播路径上的最小大气折射率波动,最高可达10〜(-10)。容易进行系统校准,结果表明电压折射率灵敏度约为2.1x10〜(-6)V〜(-1)。该系统被集成并很好地固定在一个魁梧的防潮盒中,只有传感臂暴露在空气中。因此,该系统适用于测量陆地和海洋表面的大气湍流。

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