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Nonlinear process-induced spectral changes in hydrogenated amorphous silicon core optical fibre

机译:氢化非晶硅芯光纤中非线性过程引起的光谱变化

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In this paper, the spectral properties of temporal double pulses centred at the same central wavelength and two different central wavelengths are numerically presented based on hydrogenated amorphous silicon core optical fibre. In order to characterise the output spectra of double pulses, the group velocity dispersion and various nonlinear processes including self-phase modulation, cross-phase modulation, two-photon absorption, free carrier absorption and free carrier dispersion are considered in the theoretical model. Numerical results show that, under fixed fibre length condition, the widths of the outcome spectra are strongly dependent on the delay times, peak powers and initial chirps of input double pulses, i.e. widths of the output spectra are proportional to the launched peak powers, and the delay times control the separation between two pulses, resulting in the spectral change within a proper delay time, and the spectral widths are compressed or extended by judiciously adjusting the initial chirps imposed on the input pulses.
机译:在本文中,基于氢化非晶硅芯光纤,数值表示了以相同中心波长和两个不同中心波长为中心的时间双脉冲的光谱特性。为了表征双脉冲的输出光谱,在理论模型中考虑了群速度色散和各种非线性过程,包括自相位调制,交叉相位调制,双光子吸收,自由载流子吸收和自由载流子散射。数值结果表明,在固定的光纤长度条件下,输出光谱的宽度很大程度上取决于输入双脉冲的延迟时间,峰值功率和初始chi,即输出光谱的宽度与发射的峰值功率成正比,并且延迟时间控制两个脉冲之间的间隔,从而在适当的延迟时间内导致频谱变化,并且通过明智地调整施加在输入脉冲上的初始chi,可以压缩或扩展频谱宽度。

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