Fast and slow self-phase modulation induced pulse shaping of subpicosecond pulses in semiconductor laser amplifiers

A. Dienes, M. Hong, J. Heritage
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Abstract

Self- and cross-phase modulation (SPM, XPM) of picosecond pulses due to gain saturation in semiconductor laser amplifiers has been investigated, both theoretically and experimentally.1,2,3 Because of the large value of the so-called linewidth enhancement factor α, these effects can result in considerable nonlinear sweep and spectral broadening. The spectrally broadened pulses can be partially compressed1,2 by providing dispersion externally. It has also been shown3 that the quadratic shape of the gain spectrum can result in considerable positive second-order phase dispersion. For pulse durations of about 1 ps or shorter (and input energies in the 0.1-1 pj range) the fast n2 must also be considered. The gain saturation induced “slow” self phase modulation (SSPM) is an integrating, energy dependent effect. On the other hand, the fast n2 responds to the instantaneous intensity of the pulse, resulting in “fast” self phase modulation (FSPM). The interplay of saturation, two kinds of SPM and dispersion will result in complicated pulse shaping. In this paper, we investigate the evolution of subpicosecond pulses in semiconductor amplifiers using a differential equation similar to one used for studying saturated dye laser amplifiers.4 Under certain conditions, soliton-like compression effects are predicted.
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半导体激光放大器中快速和慢速自相位调制诱导的亚皮秒脉冲整形
本文从理论和实验两方面研究了半导体激光放大器中增益饱和引起的皮秒脉冲的自相位调制和交叉相位调制。由于所谓的线宽增强因子α值很大,这些效应会导致相当大的非线性扫描和光谱展宽。通过在外部提供色散,可以对光谱加宽的脉冲进行部分压缩。还表明,增益谱的二次形状可以导致相当大的正二阶相色散。对于大约1ps或更短的脉冲持续时间(输入能量在0.1- 1pj范围内),还必须考虑快速n2。增益饱和诱导的“慢”自相位调制(SSPM)是一种积分的、能量依赖的效应。另一方面,快速n2响应脉冲的瞬时强度,导致“快速”自相位调制(FSPM)。饱和、两种SPM和色散的相互作用将导致复杂的脉冲成形。在本文中,我们使用一个类似于研究饱和染料激光放大器的微分方程来研究半导体放大器中亚皮秒脉冲的演化在一定条件下,预测了类孤子压缩效应。
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