Cristiani Ilaria, Tediosi Riccardo, Tartara Luca, Degiorgio Vittorio
Opt Express. 2004 Jan 12;12(1):124-35. doi: 10.1364/opex.12.000124.
We study the nonlinear propagation of femtosecond pulses in the anomalous dispersion region of microstructured fibers, where soliton fission mechanisms play an important role. The experiment shows that the output spectrum contains, besides the infrared supercontinuum, a narrow-band 430-nm peak, carrying about one fourth of the input energy. By combining simulation and experiments, we explore the generation mechanism of the visible peak and describe its properties. The simulation demonstrates that the blue peak is generated only when the input pulse is so strongly compressed that the short-wavelength tail of the spectrum includes the wavelength predicted for the dispersive wave. In agreement with simulation, intensity-autocorrelation measurements show that the duration of the blue pulse is in the picosecond time range, and that, by increasing the input intensity, satellite pulses of lower intensity are generated.
我们研究了飞秒脉冲在微结构光纤反常色散区域中的非线性传播,其中孤子分裂机制起着重要作用。实验表明,除了红外超连续谱外,输出光谱还包含一个窄带430纳米的峰值,携带约四分之一的输入能量。通过结合模拟和实验,我们探索了可见峰值的产生机制并描述了其特性。模拟表明,只有当输入脉冲被强烈压缩以至于光谱的短波长尾部包含色散波预测的波长时,才会产生蓝色峰值。与模拟结果一致,强度自相关测量表明蓝色脉冲的持续时间在皮秒时间范围内,并且通过增加输入强度,会产生强度较低的卫星脉冲。