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A photonic phased array using frequency quadrupling without optical filtering

机译:使用四倍频而不进行光学滤波的光子相控阵

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This work demonstrates a millimeter-wave photonic phased array where the input millimeter-wave is generated by a frequency quadrupling technique. The array consists of an external dual-parallel Mach-Zehnder modulator (DPMZM), an optical amplifier and a wavelength-division-multiplex (WDM) coupler. A wavelength-division-multiplexed optical signal from multiple lasers is inputted into the DPMZM and modulated with a 15-GHz radio-frequency (RF) signal to produce a 60-GHz modulation, in which more than 20 dB on optical harmonic distortion suppression ratio is realized without optical filtering. The modulated signal is propagated over an optical fiber is then divided into each feeder of the array by the WDM coupler and de-modulated by photo diodes. This system provides sufficient phase difference without distortion effected by chromatic dispersion of the fiber. The phases are controlled by changing the wavelength of the lasers. A beam shift from -30 degree to 30 degree is achieved by using this system.
机译:这项工作演示了毫米波光子相控阵,其中输入毫米波是通过四倍频技术生成的。该阵列由一个外部双并行马赫曾德尔调制器(DPMZM),一个光放大器和一个波分复用(WDM)耦合器组成。来自多个激光器的波分复用光信号输入DPMZM,并用15 GHz射频(RF)信号进行调制,以产生60 GHz调制,其中光谐波失真抑制比超过20 dB无需光学滤波即可实现。调制信号在光纤上传播,然后由WDM耦合器分成阵列的每个馈线,并由光电二极管进行解调。该系统提供足够的相位差,而不会受到光纤色散的影响。通过改变激光器的波长来控制相位。通过使用该系统,可以实现从-30度到30度的光束转换。

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