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Photonic radio frequency phase-shift amplification by radio frequency interferometry

机译:射频干涉法进行光子射频相移放大

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摘要

We present a new technique for radio frequency (RF) phase-shift amplification based on RF interferometry and demonstrate it in an optical system. A striking feature of this amplifier is that the input phase noise is not amplified together with the input phase signal, so the phase sensitivity improves with higher phase amplification. We also predict that in the case of correlated amplitude noise, the sensitivity is not affected by the amplitude noise. With 600 MHz of modulated light and a phase amplification of 100, we demonstrate a phase resolution of 0.2 mrad, giving a distance resolution of 8 mu m. We postulate that nanometric distance resolution can be achieved with sub-gigahertz modulation. (C) 2015 Optical Society of America
机译:我们提出了一种基于RF干涉测量技术的射频(RF)相移放大新技术,并在光学系统中进行了演示。该放大器的显着特点是输入相位噪声不会与输入相位信号一起放大,因此相位灵敏度会随着相位放大率的提高而提高。我们还预测,在相关振幅噪声的情况下,灵敏度不受振幅噪声的影响。利用600 MHz的调制光和100的相位放大率,我们证明了0.2 mrad的相位分辨率,给出了8μm的距离分辨率。我们假设可以通过亚千兆赫兹调制实现纳米级距离分辨率。 (C)2015年美国眼镜学会

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