Propagation of high-power parabolic pulses in cubicon fiber amplifiers

Shumin Zhang, C. Jin, Y. Meng
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Abstract

We have theoretically studied pulse propagation in a normal-dispersion optical cubicon fiber amplifier (NDOCFA) with an arbitrary longitudinal gain proflie, and have obtained an analytic solution for the nonlinear Schrödinger equation that describles such an amplifier. The results show that the characteristics of self-similarity and linear chirp will be lost due to third-order dispersion. However, by using a dispersion compensation technique, one can obtain efficient and high-quality compressed pulses. The numerical simulation is consistent with the analytic results.
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高功率抛物脉冲在立方体光纤放大器中的传播
本文从理论上研究了具有任意纵向增益曲线的正色散光学立方体光纤放大器(NDOCFA)中的脉冲传播,并得到了描述该放大器的非线性Schrödinger方程的解析解。结果表明,三阶色散会导致自相似和线性啁啾特性的丧失。然而,利用色散补偿技术可以获得高效、高质量的压缩脉冲。数值模拟结果与分析结果吻合较好。
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