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Linear and Nonlinear Optical Pulse Propagation in Photonic Crystal Waveguides Near the Band Edge

机译:接近带边缘的光子晶体波导中的线性和非线性光脉冲传播

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In this paper, the propagation of optical pulses in photonic crystal waveguides (PCWs) near the edge of the guided band is numerically investigated. In the linear regime, it is shown that group velocity dispersion can significantly limit the maximum bit rate of the optical signal. On the other hand, better performance is obtained using soliton waves. Both bright and dark solitons can significantly increase the maximum bit rate that can be achieved in the nanosecond delay regime. The influence of higher order dispersion and optical loss is numerically investigated. The results indicate that near the band edge soliton propagation in PCWs can be stable, provided that the optical losses are kept low. This could open a path towards implementing compact nonlinear elements and delay lines in integrated form.
机译:在本文中,对光脉冲在导带边缘附近的光子晶体波导(PCW)中的传播进行了数值研究。在线性状态下,表明群速度色散会大大限制光信号的最大比特率。另一方面,使用孤子波可获得更好的性能。亮和暗孤子都可以显着提高在纳秒延迟范围内可以达到的最大比特率。数值研究了高阶色散和光学损耗的影响。结果表明,只要保持低的光损耗,PCW中的带边孤子传播就可以稳定。这可以为实现紧凑的非线性元件和集成形式的延迟线开辟道路。

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