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Nonlinear dynamics of optoeletronic oscillators based on whispering-gallery mode resonators

机译:基于耳语画廊模式谐振器的光电振荡器的非线性动力学

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The opto-electronic oscillator is one of the most promising architecture for generating ultra-stable microwaves in the 0.1–100 GHz range. The idea consists in storing light energy instead of radio-frequency energy. This was usually achieved in a km-length fiber delay line [1,2], with the inconvenient of being bulky, energy-greedy, with a spectrum presenting spurious peaks that can be detrimental to applications. To overcome the drawbacks of fiber-based opto-electronic oscillators, it has been proposed to replace the fiber delay line with a high-Q whispering-gallery mode (WGM) resonator [3]. In such a resonator, photons are trapped inside the dielectric by total internal reflection, hence performing optical energy storage. For a Q-factor in the 10
机译:光电振荡器是产生0.1–100 GHz范围内超稳定微波的最有希望的架构之一。这个想法在于存储光能而不是射频能量。这通常是在千米长度的光纤延迟线[1,2]中实现的,但带来的麻烦是体积大,能量贪婪,并且频谱呈现出可能对应用不利的杂散峰。为了克服基于光纤的光电振荡器的弊端,有人提出用高Q耳语画廊模式(WGM)谐振器代替光纤延迟线[3]。在这样的谐振器中,光子通过全内反射而被捕获在电介质内部,从而进行光能存储。对于10中的Q因子

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