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Broad-band linearization of a Mach-Zehnder electrooptic modulator

机译:Mach-Zehnder电光调制器的宽带线性化

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Analog optical-link dynamic range in excess of 75 dB in a 1-MHz band has been achieved using specially designed electrooptic modulators that minimize one or more orders of harmonic and intermodulation distortion. To date, however, such "linearized" modulators have only enabled improved link dynamic ranges at frequencies below 1 GHz. Additionally, linearization across more than an octave bandwidth has required precise balancing of the signal voltage levels on multiple electrodes in a custom modulator, which represents a significant implementation challenge. In this paper, a link linearization technique that uses a standard Mach-Zehnder lithium-niobate modulator with only one RF and one dc-bias electrode to achieve broad-band linearization is discussed, resulting in a dynamic range of 74 dB in 1 MHz across greater than an octave bandwidth (800-2500 MHz). Instead of balancing the voltages on two RF electrodes, the modulator in this new link architecture simultaneously modulates optical carriers at two wavelengths, and it is the ratio of these optical carrier powers that is adjusted for optimum distortion canceling. The paper concludes by describing a second analogous link architecture in which it is the ratio of optical power at two modulated polarizations that is adjusted in order to achieve broad-band linearization.
机译:使用专门设计的电光调制器,可以将一个或多个阶次的谐波和互调失真降至最低,从而在1 MHz频带内实现了超过75 dB的模拟光链路动态范围。然而,迄今为止,此类“线性化”调制器仅在低于1 GHz的频率下才能够改善链路动态范围。另外,跨越一个倍频程带宽的线性化要求在定制调制器中的多个电极上精确平衡信号电压电平,这代表了重大的实现挑战。本文讨论了一种链路线性化技术,该技术使用仅具有一个RF和一个dc偏置电极的标准Mach-Zehnder铌酸锂调制器来实现宽带线性化,从而在1 MHz范围内产生74 dB的动态范围大于倍频程带宽(800-2500 MHz)。这种新的链路架构中的调制器不是平衡两个RF电极上的电压,而是同时调制两个波长的光载波,并且调整了这些光载波功率的比率以实现最佳失真消除。本文以描述第二种类似的链路体系结构作为结束,在该体系结构中,为了实现宽带线性化而对两个调制偏振态的光功率之比进行了调整。

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