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Approximate and exact small signal analysis for single-mode fiber near zero dispersion wavelength with higher order dispersion

机译:零色散波长附近具有高阶色散的单模光纤的近似和精确小信号分析

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This article presents the comparison of approximate and exact small-signal theories for analyzing the influence of the higher-order dispersion term on dispersive optical communication systems operating near zero dispersion wavelength for linear single-mode fiber. For the approximate theory, the generalized conversion matrix has been reported and gives the transfer function of intensity and phase from the fiber input to fiber output for a laser source including the influence of any higher-order dispersion term. In addition, expressions for the small-signal frequency response and the relative intensity noise (RIN) response of an ultrafast laser diode including noises are derived. However, it is observed that the approximation assumed for the second-order dispersion term for the approximate analysis is not valid. From the approximate theory, the exact generalized conversion matrix and exact expressions for small-signal frequency response and relative intensity noise (RIN) are obtained. We show that for the exact theory, the second-order dispersion term has no effect on intensity and frequency response even at large modulating frequencies and large propagation distances contrary to the approximate theory as reported by other authors. But we show that third-order dispersion term certainly has some minute impact oil the frequency and RIN response for long distance links at high modulating frequencies. [References: 21]
机译:本文介绍了近似和精确小信号理论的比较,以分析高阶色散项对线性零模光纤在零色散波长附近工作的色散光通信系统的影响。对于近似理论,已经报道了广义转换矩阵,该矩阵给出了激光源从光纤输入到光纤输出的强度和相位的传递函数,包括任何高阶色散项的影响。另外,推导了包括噪声在内的超快激光二极管的小信号频率响应和相对强度噪声(RIN)响应的表达式。但是,可以看出,对于近似分析而言,针对二阶色散项假设的近似是无效的。从近似理论出发,获得了精确的广义转换矩阵以及小信号频率响应和相对强度噪声(RIN)的精确表达式。我们证明,对于精确的理论,二阶色散项即使在较大的调制频率和较大的传播距离下,对强度和频率响应也没有影响,这与其他作者所报道的近似理论相反。但是我们表明,对于高调制频率下的长距离链路,三阶色散项确实会对频率和RIN响应产生微小的影响。 [参考:21]

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