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Energy efficient photonic millimeter-wave generation using cascaded polarization modulators

机译:使用级联偏振调制器的高能效光子毫米波产生

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A filter-less millimeter-wave generation scheme consisting of four polarization modulators in series, each followed by a polarizer is proposed to achieve optoelectronic frequency octupling. The cascade of polarization modulator and polarizer provides an intensity modulator whose biasing condition can be set by the polarizer angle and polarization state of the input light to each polarization modulator. A theoretical analysis of the architecture is performed using a transfer function method and validated by industry-standard software simulation tools. The circuit shows high potential in achieving desired performance with lower input RF power when compared to the another configuration based on a generalized Mach-Zehnder interferometer structure. Although the operating range in terms of applied RF drive becomes narrow, low RF input operation can be achieved by this circuit. The effect of imbalances in the key circuit parameters is also investigated in terms of electrical side harmonic suppression ratio.
机译:提出了一种无滤波器的毫米波生成方案,该方案由四个串联的偏振调制器组成,每个偏振调制器后接一个偏振器,以实现光电频率八倍。偏振调制器和偏振器的级联提供了强度调制器,该强度调制器的偏置条件可以通过偏振器角度和每个偏振调制器的输入光的偏振状态来设置。使用传递函数方法对体系结构进行理论分析,并通过行业标准的软件仿真工具进行验证。与基于广义Mach-Zehnder干涉仪结构的另一种配置相比,该电路在较低的输入RF功率下具有实现所需性能的高潜力。尽管就所施加的RF驱动而言,工作范围变窄,但是通过该电路可以实现低RF输入操作。还从电气侧谐波抑制比的角度研究了关键电路参数不平衡的影响。

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