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Filterless frequency 12-tupling optical millimeter-wave generation using two cascaded dual-parallel Mach-Zehnder modulators

机译:使用两个级联双并联Mach-Zehnder调制器生成无滤波器的12倍频毫米波光波

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A novel frequency 12-tupling optical millimeter-wave (mm-wave) generation using two cascaded dual-parallel Mach-Zehnder modulators (DP-MZMs) without an optical filter is proposed and demonstrated by computer simulation. By properly adjusting the amplitude and phase of radio frequency (RF) driving signal and the direct current (DC) bias points of two DP-MZMs, a 120 GHz mm-wave with an optical sideband suppression ratio (OSSR) of 25.1 dB and a radio frequency spurious suppression ratio (RFSSR) of 19.1 dB is shown to be generated from a 10 GHz RF driving signal, which largely reduces the response frequency of electronic devices. Furthermore, it is also proved to be valid that even if the phase difference of RF driving signals, the RF driving voltage, and the DC bias voltage deviate from the ideal values to a certain degree, the performance is still acceptable. Since no optical filter is employed to suppress the undesired optical sidebands, a high-spectral-purity mm-wave signal tunable from 48 to 216 GHz can be obtained theoretically when a RF driving signal from 4 to 18 GHz is applied to the DP-MZMs, and the system can be readily implemented in wavelength-division-multiplexing upconversion systems to provide high-quality optical local oscillator signal. (C) 2015 Optical Society of America
机译:提出了一种新颖的使用12个级联双Mach-Zehnder调制器(DP-MZMs)的频率为12的光学毫米波(mm-wave)生成方法,并通过计算机仿真进行了演示。通过适当地调整两个DP-MZM的射频(RF)驱动信号的幅度和相位以及直流(DC)偏置点,可以得到120 GHz毫米波,其光学边带抑制比(OSSR)为25.1 dB,并且射频杂散抑制比(RFSSR)为19.1 dB,显示是从10 GHz射频驱动信号产生的,大大降低了电子设备的响应频率。此外,即使RF驱动信号的相位差,RF驱动电压和DC偏置电压偏离理想值一定程度,该性能仍然可以接受,这也是有效的。由于不使用滤光器来抑制不希望的光学边带,因此,当将4至18 GHz的RF驱动信号应用于DP-MZM时,理论上可以获得可调谐至48至216 GHz的高光谱纯度毫米波信号,该系统可以很容易地在波分复用上变频系统中实现,以提供高质量的光学本地振荡器信号。 (C)2015年美国眼镜学会

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