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A Novel Photonic Clock and Carrier Recovery Device

机译:新型光子钟和载流子恢复装置

摘要

As data communication rates climb toward ten Gb/s, clock recovery and synchronization become more difficult, if not impossible, using conventional electronic circuits. We present in this article experimental results of a high speed clock and carrier recovery using a novel device called a photonic oscillator that we recently developed in our laboratory. This device is capable of recovering clock signals up to 70 GHz. To recover the clock, the incoming data is injected into the photonic oscillator either through the optical injection port or the electrical injection port. The free running photonic oscillator is tuned to oscillate at a nominal frequency equal to the clock frequency of the incoming data. With the injection of the data, the photonic oscillator will be quickly locked to clock frequency of the data stream while rejecting other frequency components associated with the data. Consequently, the output of the locked photonic oscillator is a continuous periodical wave synchronized with the incoming data or simply the recovered clock. We have demonstrated a clock to spur ratio of more than 60 dB of the recovered clock using this technique. Similar to the clock recovery, the photonic oscillator can be used to recover a high frequency carrier degraded by noise and an improvement of about 50 dB in signal-to-noise ratio was demonstrated. The photonic oscillator has both electrical and optical inputs and outputs and can be directly interfaced with a photonic system without signal conversion. In addition to clock and carrier recovery, the photonic oscillator can also be used for (1) stable high frequency clock signal generation, (2) frequency multiplication, (3) square wave and comb frequency generation, and (4) photonic phase locked loop.
机译:随着数据通信速率攀升至10 Gb / s,使用传统电子电路,即使不是不可能,时钟恢复和同步也变得更加困难。我们在本文中介绍了使用我们最近在实验室中开发的一种称为光子振荡器的新型设备进行高速时钟和载波恢复的实验结果。该设备能够恢复高达70 GHz的时钟信号。为了恢复时钟,输入的数据通过光注入端口或电注入端口注入光子振荡器。自由运行的光子振荡器被调谐为以等于输入数据时钟频率的标称频率振荡。随着数据的注入,光子振荡器将快速锁定到数据流的时钟频率,同时拒绝与数据相关的其他频率分量。因此,锁定的光子振荡器的输出是与输入数据同步的连续周期波,或者仅仅是恢复的时钟。我们已经证明了使用该技术的时钟杂散比超过恢复时钟的60 dB。与时钟恢复类似,光子振荡器可用于恢复因噪声而退化的高频载波,并且信噪比提高了约50 dB。光子振荡器具有电和光输入和输出,可以直接与光子系统接口,而无需信号转换。除时钟和载波恢复外,光子振荡器还可用于(1)稳定的高频时钟信号生成,(2)倍频,(3)方波和梳状频率生成以及(4)光子锁相环。

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