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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Performance Limits of Optical Clock Recovery Systems Based on Two-Photon Absorption Detection Scheme
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Performance Limits of Optical Clock Recovery Systems Based on Two-Photon Absorption Detection Scheme

机译:基于双光子吸收检测方案的光时钟恢复系统的性能极限

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In this paper, we analyze and discuss the performance limits of optical clock recovery systems using a phase-locked loop (PLL) structure with nonlinear two-photon absorption (TPA) phase detection scheme. The motivation in analyzing the aforementioned optical PLL with TPA receiver structure is due to a recent successful experiment reported in . We characterize the mathematical structure of PLLs with TPA, so as to evaluate the performance limits on optical clock recovery mechanism. More specifically, we identify two intrinsic sources of phase noise in the system namely, the on– off nature of the incoming data pulses and the detector''s shot noise that ultimately limit the performance of the aforementioned optical clock recovery system. In our characterization of the clock recovery system, we obtain the power spectral densities (PSDs) of the signals involved in the PLL and use the PSDs to obtain a mathematical expression for the variance of the timing jitter inherently associated with the recovered clock. We examine the variance of the introduced timing jitter as a function of different system parameters such as power, bit rate, and pulsewidth of the data and clock signals. An interesting result is that the duty cycle factor near 4 in return to zero optical pulses is optimal in the sense that it minimizes the variance of the system phase noise.
机译:在本文中,我们分析和讨论了使用具有非线性双光子吸收(TPA)相位检测方案的锁相环(PLL)结构的光时钟恢复系统的性能极限。分析上述具有TPA接收器结构的光学PLL的动机是由于最近在2004年报道了成功的实验。我们用TPA表征了PLL的数学结构,以评估光时钟恢复机制的性能极限。更具体地说,我们确定了系统中两个固有的相位噪声源,即输入数据脉冲的开-关特性和检测器的散粒噪声,它们最终限制了上述光时钟恢复系统的性能。在我们对时钟恢复系统的表征中,我们获得了PLL所涉及信号的功率谱密度(PSD),并使用PSD获得了与恢复时钟固有相关的时序抖动变化的数学表达式。我们根据不同的系统参数(例如功率,比特率以及数据和时钟信号的脉冲宽度)来检查引入的时序抖动的方差。一个有趣的结果是,在返回零个光脉冲的情况下,占空比系数接近4是最佳的,因为它可以最大程度地减小系统相位噪声的方差。

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