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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Analytical model, analysis and parameter optimization of a super linear electro-optic modulator (SFDR 130 dB)
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Analytical model, analysis and parameter optimization of a super linear electro-optic modulator (SFDR 130 dB)

机译:超线性电光调制器(SFDR> 130 dB)的分析模型,分析和参数优化

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摘要

An analytical model of a super linear optical modulator with high spurious-free-dynamic-range (SFDR> 130 dB) is presented and analyzed. The linear modulator is referred to as IMPACC which stands for Interferometric Modulator with Phase-modulating And Cavity-modulating Components. The modulator is based on a unique combination of a RF-driven phase-modulator (PM) and a ring resonator (RR) within a Mach-Zehnder interferometer (MZI) configuration. Our analysis shows that our design can achieve SFDR values which are approx20 dB higher than the standard MZI modulator and 3-5 dB from the Ring Assisted Mach-Zehnder Interferometer (RAMZI) modulator. Both PM and RR in the IMPACC are simultaneously driven by a RF signal of the same frequency, but not necessarily the same amplitudes. The analytical model shows that the combination of these two optical elements, with the proper choice of RF-driving and device parameters, can lead to four important and compelling consequences. First, it offers a wholistic and elegant model in which the standard MZI modulator and the RAMZI modulator are just special cases of IMPACC. Second, the model offers an excellent parameter optimization methodology for fast parameter (internal and/or external) selection and performance evaluation. Third, it provides additional degree of control through the introduction of an external control parameter, the RF power split ratio (F). Lastly, it demonstrates one unique feature of IMPACC such as adaptive SFDR characteristics, where manufacturing tolerances in the transmission coefficient (tau) of the RR can be compensated with proper adjustments of the external parameter of the power split ratio (F).
机译:提出并分析了具有高无杂散动态范围(SFDR> 130 dB)的超线性光学调制器的解析模型。线性调制器称为IMPACC,代表具有相位调制和腔调制组件的干涉式调制器。调制器基于马赫曾德尔干涉仪(MZI)配置中射频驱动的相位调制器(PM)和环形谐振器(RR)的独特组合。我们的分析表明,我们的设计可实现的SFDR值比标准MZI调制器高约20 dB,而环形辅助马赫曾德尔干涉仪(RAMZI)调制器可达到3-5 dB。 IMPACC中的PM和RR均由相同频率但不一定相同幅度的RF信号同时驱动。分析模型表明,这两种光学元件的结合以及适当的射频驱动和设备参数选择,会导致四个重要而令人信服的结果。首先,它提供了一个全面而优雅的模型,其中标准MZI调制器和RAMZI调制器只是IMPACC的特例。其次,该模型为快速的参数(内部和/或外部)选择和性能评估提供了出色的参数优化方法。第三,它通过引入外部控制参数RF功率分配比(F)来提供附加的控制程度。最后,它展示了IMPACC的一个独特功能,例如自适应SFDR特性,其中可以通过适当调整功率分配比(F)的外部参数来补偿RR的传输系数(tau)的制造公差。

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