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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Self-phase modulation-based integrated optical regeneration in chalcogenide waveguides
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Self-phase modulation-based integrated optical regeneration in chalcogenide waveguides

机译:硫族化物波导中基于自相位调制的集成光学再生

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We demonstrate integrated all-optical 2R regenerators based on Kerr optical nonlinearities (subpicosecond response) in chalcogenide glass waveguides with integrated Bragg grating filters. By combining a low loss As/sub 2/S/sub 3/ rib waveguide with an in-waveguide photo-written Bragg grating filter, we realize an integrated all-optical 2R signal regenerator with the potential to process bit rates in excess of 1 Tb/s. The device operates using a combination of self phase modulation induced spectral broadening followed by a linear filter offset from the input center wavelength. A nonlinear power transfer curve is demonstrated using 1.4 ps pulses, sufficient for suppressing noise in an amplified transmission link. We investigate the role of dispersion on the device transfer characteristics, and discuss future avenues to realizing a device capable of operation at subwatt peak power levels.
机译:我们在具有集成布拉格光栅滤波器的硫族化物玻璃波导中演示了基于Kerr光学非线性(亚皮秒响应)的集成全光2R再生器。通过将低损耗的As / sub 2 / S / sub 3 /肋形波导与波导内写式布拉格光栅滤波器相结合,我们实现了集成的全光2R信号再生器,具有处理超过1比特率的潜力吨/秒该设备使用自相位调制引起的光谱加宽,然后是从输入中心波长偏移的线性滤波器的组合来工作。使用1.4 ps脉冲演示了非线性功率传输曲线,足以抑制放大的传输链路中的噪声。我们研究了色散对器件传输特性的作用,并讨论了实现能够以亚瓦特峰值功率运行的器件的未来途径。

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