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Phase Noise Performance of Optoelectronic Oscillators Based on Whispering-Gallery Mode Resonators

机译:基于回音壁模式谐振器的光电振荡器的相位噪声性能

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Optoelectronic oscillators based on whispering-gallery mode resonators (WGMRs) are efficient oscillators for ultra-stable microwave generation, in which the energy can be stored in an ultra-high -factor resonator instead of the usual long delay line. In this paper, we derive a stochastic model for the calculation of the phase noise performance in these systems considering three different configurations, namely, the case where the energy is stored in high- disk-shaped WGMR, the case where energy is stored in an optical delay-line only, and the case for which the energy is stored simultaneously by the resonator and the delay line. Our investigations explain how the WGMR can be optimally used for spurious peak rejection in optoelectronic oscillators. Our experimental measurements are found to be in excellent agreement with analytical and simulation results.
机译:基于耳语画廊模式谐振器(WGMR)的光电振荡器是产生超稳定微波的有效振荡器,其中能量可以存储在超高因子谐振器中,而不是通常的长延迟线。在本文中,我们考虑了三种不同的配置,得出了用于计算这些系统中的相位噪声性能的随机模型,即,将能量存储在高圆盘形WGMR中的情况,将能量存储在高磁碟形WGMR中的情况。仅限于光学延迟线,以及谐振器和延迟线同时存储能量的情况。我们的研究解释了如何将WGMR最佳地用于光电振荡器的寄生峰值抑制。我们的实验测量结果与分析和模拟结果非常吻合。

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