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RIN-Suppressed Ultra-Low Noise Interferometric Fiber Optic Gyroscopes (IFOGs) for Improving Inertial Stabilization of Space Telescopes

机译:RIN抑制的超低噪声干涉式光纤陀螺仪(IFOG),用于改善空间望远镜的惯性稳定性

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摘要

Pointing, acquisition, and tracking (PAT) systems in spacebome optical communications terminals can exploit inertial sensors and actuators to counter platform vibrations and maintain steady beam pointing. Interferometric fiber optic gyroscopes (IFOGs) can provide sensitive angle rate measurements down to very low (sub-milliHertz) mechanical frequencies, potentially reducing the required beacon power and facilitating acquisition for a spaceborne optical communications terminals. Incoherent broadband light sources are used in IFOGs to alleviate detrimental effects of optical nonlinearities, backscattering, and polarization non-reciprocity. But incoherent broadband sources have excess noise or relative intensity noise (RIN), caused by the beating of different spectral components on the photodetector. Unless RIN noise is suppressed, IFOG performance cannot be improved once the light on the photodetector exceeds one photon per coherence time (-microWatts). We propose a simple method to dramatically suppress the RIN of an incoherent light source and thereby reduce the angle random walk (ARW) of an IFOG using such a source. We demonstrate 20 dB RIN suppression of a broadband EDFA source, which we predict could improve the angle random walk (ARW) of an IFOG using this source by 12 dB.
机译:太空物体光通信终端中的指向,获取和跟踪(PAT)系统可以利用惯性传感器和执行器来抵抗平台振动并保持稳定的光束指向。干涉式光纤陀螺仪(IFOG)可以提供低至极低(sub-MilliHertz)机械频率的灵敏角速率测量,从而有可能降低所需的信标功率,并有利于获取星载光通信终端。 IFOG中使用了非相干宽带光源,以减轻光学非线性,后向散射和偏振不可逆的不利影响。但是不相干的宽带源具有多余的噪声或相对强度噪声(RIN),这是由光电探测器上不同光谱分量的跳动引起的。除非抑制RIN噪声,否则一旦光检测器上的光每相干时间超过一个光子(微瓦),就无法改善IFOG性能。我们提出了一种简单的方法来显着抑制非相干光源的RIN,从而减少使用此类光源的IFOG的角度随机游走(ARW)。我们演示了宽带EDFA源的20 dB RIN抑制,我们预测使用该源可以将IFOG的角度随机游走(ARW)改善12 dB。

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