Desaix M, Anderson D, Lisak M
Opt Lett. 1990 Jan 1;15(1):18-20. doi: 10.1364/ol.15.000018.
It is shown that solitons emerging from pulses launched with frequencies at, or close to, the zero-dispersion point in a single-mode optical fiber are ordinary bright solitons corresponding to the nonlinear Schrödinger equation. These solitons are inherently frequency shifted into the anomalous-dispersion regime, where the third-order dispersion acts as a small perturbation. We therefore conclude that an optical-soliton-based communication system should be designed with the carrier frequency in the anomalous-dispersion regime but not too close to the zero-dispersion point, where the formation of an unwanted dispersive-wave component would degrade the system performance.
结果表明,在单模光纤中,从频率处于或接近零色散点的脉冲产生的孤子是对应于非线性薛定谔方程的普通亮孤子。这些孤子本质上会频移到反常色散区,在该区域三阶色散起小扰动作用。因此我们得出结论,基于光孤子的通信系统的设计应使载波频率处于反常色散区,但不能太接近零色散点,因为在零色散点处不需要的色散波分量的形成会降低系统性能。