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Comparison of optical processing techniques for optical microwave signal generation

机译:产生微波信号的光学处理技术的比较

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Recently, there have been several proposals on using the higher RF harmonics of detected pulses from mode-locked semiconductor lasers as a source of microwave and millimeter waves. This paper compares the performance of three optical techniques of signal processing that have been proposed to select a higher harmonic of a mode-locked laser, by using extensive numerical simulations. We show that techniques using delays and splitters are insensitive to the coherence properties of the source, but can introduce amplitude patterning if pulses overlap when recombined. We see that techniques relying on optical filtering to select optical modes require extremely high-Q filters and, thus, are extremely sensitive to tuning. A Fabry-Perot interferometer (FPI) is the optimum fitter method in terms of power efficiency for low harmonics, but using two separate bandpass filters can give comparable efficiency when selecting higher harmonics. We also show that gain-switched lasers are unsuitable as sources when used with narrow-band optical filtering techniques because of their low pulse-to-pulse optical coherence.
机译:近来,已经有一些关于使用来自锁模半导体激光器的检测到的脉冲的较高RF谐波作为微波和毫米波源的提议。本文通过广泛的数值模拟,比较了为选择锁模激光器的高次谐波而提出的三种信号处理光学技术的性能。我们表明,使用延迟和分离器的技术对信号源的相干特性不敏感,但是如果在重组时脉冲重叠,则会引入幅度模式。我们看到依靠光学滤波来选择光学模式的技术需要极高的Q滤波器,因此对调谐极为敏感。就低谐波的功率效率而言,法布里-珀罗干涉仪(FPI)是最佳的钳工方法,但是在选择较高谐波时,使用两个单独的带通滤波器可以提供相当的效率。我们还表明,增益切换激光器由于窄脉冲光学相干性低,因此不适合与窄带光学滤波技术一起使用。

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