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Photonic arbitrary waveform generator based on Taylor synthesis method

机译:基于泰勒合成方法的光子任意波形发生器

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摘要

Arbitrary waveform generation has been widely used in optical communication, radar system and many other applications. We propose and experimentally demonstrate a silicon-on-insulator (SOI) on chip optical arbitrary waveform generator, which is based on Taylor synthesis method. In our scheme, a Gaussian pulse is launched to some cascaded microrings to obtain first-, second- and third-order differentiations. By controlling amplitude and phase of the initial pulse and successive differentiations, we can realize an arbitrary waveform generator according to Taylor expansion. We obtain several typical waveforms such as square waveform, triangular waveform, flat-top waveform, sawtooth waveform, Gaussian waveform and so on. Unlike other schemes based on Fourier synthesis or frequency-to-time mapping, our scheme is based on Taylor synthesis method. Our scheme does not require any spectral disperser or large dispersion, which are difficult to fabricate on chip. Our scheme is compact and capable for integration with electronics. (C) 2016 Optical Society of America
机译:任意波形生成已广泛用于光通信,雷达系统和许多其他应用中。我们提出并通过实验演示了一种基于泰勒合成方法的片上绝缘体上硅(SOI)光学任意波形发生器。在我们的方案中,向一些级联的微环发射高斯脉冲以获得一阶,二阶和三阶微分。通过控制初始脉冲的幅度和相位以及连续的微分,我们可以根据泰勒展开来实现任意波形发生器。我们获得了几种典型的波形,例如方波,三角波,平顶波,锯齿波,高斯波等。与其他基于傅立叶综合或频率-时间映射的方案不同,我们的方案基于泰勒综合方法。我们的方案不需要任何难以在芯片上制造的光谱色散或大色散。我们的方案紧凑,能够与电子产品集成。 (C)2016美国眼镜学会

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