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Nonlinear switching of optical pulses in fiber Bragg gratings

机译:光纤布拉格光栅中光脉冲的非线性转换

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We study numerically the nonlinear switching characteristics of optical pulses transmitted though fiber Bragg gratings. We consider both the uniform and phase-shifted gratings and compare their performance as a nonlinear switch. The nonlinear coupled-mode equations were solved numerically to obtain the pulse-switching characteristics. The steady-state behavior known to occur for continuous-wave optical beams is realized only for pulses wider than 10 ns with long tails. For pulsewidths in the range 0.1-1 ns, the use of phase-shifted gratings reduces the switching threshold, but the on-off contrast is generally better for uniform gratings. We also quantify the effects of rise and fall times associated with an optical pulse on nonlinear switching by considering the Gaussian pulses with smooth tails and nearly rectangular pulses with sharp leading and trailing edges.
机译:我们通过数值研究通过光纤布拉格光栅传输的光脉冲的非线性切换特性。我们同时考虑了均匀光栅和相移光栅,并比较了它们作为非线性开关的性能。对非线性耦合模式方程进行数值求解,以获得脉冲开关特性。已知对于连续波光束发生的稳态行为仅对于宽于10 ns且具有长尾巴的脉冲才可实现。对于在0.1-1 ns范围内的脉冲宽度,使用相移光栅会降低开关阈值,但对于均匀光栅,通断对比度通常会更好。我们还通过考虑具有平滑尾部的高斯脉冲和具有尖锐前缘和后缘的近乎矩形的脉冲,来量化与光脉冲相关的上升和下降时间对非线性切换的影响。

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