Ho Keang-Po
Graduate Institute of Communication Engineering, National Taiwan University, Taipei 106, Taiwan.
Opt Lett. 2003 Nov 15;28(22):2165-7. doi: 10.1364/ol.28.002165.
Based on first-order perturbation theory of the soliton, the Gordon-Haus timing jitter induced by amplifier noise is found to be non-Gaussian distributed. Both frequency and timing jitter have larger tail probabilities than Gaussian distribution given by the linearized perturbation theory. The timing jitter has a larger discrepancy from Gaussian distribution than does the frequency jitter.
基于孤子的一阶微扰理论,发现放大器噪声引起的戈登-豪斯定时抖动是非高斯分布的。与线性化微扰理论给出的高斯分布相比,频率和定时抖动都具有更大的尾部概率。定时抖动与高斯分布的差异比频率抖动更大。