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Optical millimeter-wave generation via frequency octupling circuit based on two parallel dual-parallel polarization modulators

机译:基于两个平行双行偏振调制器的通过频率八分波电路产生光学毫米波

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摘要

In this paper, a filterless optical millimeter-wave (mm-wave) generation by frequency octupling based on two parallel dual-parallel polarization modulators circuit is proposed. From the theoretical analysis, ±4th order optical sidebands can be generated by proper adjustment of the phases of the radio-frequency (RF) drive signals and polarizer angle. Since there is no need for an optical filter to suppress the optical carrier or unwanted harmonics, the system is suitable for the optical generation of highly stable and tunable mm-waves. Theoretical analysis is verified by computer simulation. From the obtained results, it is shown that the optically generated mm-wave signal from the proposed circuit has a high optical sideband suppression ratio (OSSR) and radio-frequency spurious suppression ratio (RFSSR) for a wide range of modulation index. This range of modulation index extends, theoretically, from 1.8 up to 7.3. For instance, at a modulation index of 5.318, an 80 GHz can be generated from a 10 GHz RF drive signal with an OSSR of 68.4 dB and an RFSSR of 62 dB. Furthermore, the effects of non-ideal system parameters on the OSSR and RFSSR are investigated.
机译:在本文中,提出了一种基于两个平行双行偏振调制器电路的频率偶数函数产生的无滤波光学毫米波(MM波)。根据理论分析,可以通过适当调整射频(RF)驱动信号和偏振角的相位来产生±4级光学边带。由于不需要光学滤波器来抑制光学载波或不需要的谐波,因此该系统适用于高稳定和可调谐Mm-Wave的光学产生。计算机模拟验证了理论分析。从所得结果,示出来自所提出的电路的光学产生的MM波信号具有高光秃秃的边带抑制比(OSSR)和用于广泛调制指数的射频虚拟抑制比(RFSSR)。这种调制指数在理论上延伸到1.8至7.3。例如,在5.318的调制索引处,可以从10GHz的RF驱动信号中产生80GHz,其中OSSR为68.4dB和62 dB的RFSSR。此外,研究了非理想系统参数对OSSR和RFSSR的影响。

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