Genty G, Kinsler P, Kibler B, Dudley J M
Opt Express. 2007 Apr 30;15(9):5382-7. doi: 10.1364/oe.15.005382.
We describe generalized nonlinear envelope equation modeling of sub-cycle dynamics on the underlying electric field carrier during one-dimensional propagation in fused silica. Generalized envelope equation simulations are shown to be in excellent quantitative agreement with the numerical integration of Maxwell's equations, even in the presence of shock dynamics and carrier steepening on a sub-50 attosecond timescale. In addition, by separating the effects of self-phase modulation and third harmonic generation, we examine the relative contribution of these effects in supercontinuum generation in fused silica nanowire waveguides.
我们描述了在熔融石英中一维传播期间,基础电场载波上子周期动力学的广义非线性包络方程建模。结果表明,即使在亚50阿秒时间尺度上存在激波动力学和载波陡化的情况下,广义包络方程模拟与麦克斯韦方程组的数值积分仍具有出色的定量一致性。此外,通过分离自相位调制和三次谐波产生的影响,我们研究了这些效应在熔融石英纳米线波导中超连续谱产生中的相对贡献。