Derivation of impulse response and transfer function of an optical fiber under chromatic dispersion and application to a linear fiber-optic communication system

Monish R. Chatterjee, L. S. Green
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引用次数: 2

Abstract

Treating the frequency-dependent time delay caused by the presence of chromatic dispersion in a fiber-optical channel of length L as a random variable, it is possible to obtain a simple expression for the impulse response of the channel. This idea is used to derive the impulse response in terms of parameters such as the zero-dispersion wavelength, the second derivative of the refractive index, and the linewidth of the source. The result indicates an asymmetrical impulse response, and the corresponding transfer function has a low-pass characteristic with a first-order pole which may be readily determined from the fiber parameters. The derived impulse response is applied to the case of a simple fiber-optic communication system configured as a phase diversity receiver, to illustrate how a linear systems approach, under certain approximations, may be used to predict and analyze the behavior of such a system. The analysis includes calculations involving the field amplitudes in (n*n) hybrid couplers, and how such couplers must be connected in order to obtain the desired optical components in the phase diversity scheme is described.<>
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色散下光纤脉冲响应和传递函数的推导及其在线性光纤通信系统中的应用
将长度为L的光纤通道中存在色散引起的频率相关时间延迟作为随机变量处理,可以得到该通道脉冲响应的简单表达式。这个思想被用来推导脉冲响应的参数,如零色散波长,折射率的二阶导数,和源的线宽。结果表明,脉冲响应是不对称的,相应的传递函数具有一阶极点的低通特性,这可以很容易地从光纤参数中确定。导出的脉冲响应应用于一个简单的光纤通信系统作为相位分集接收器的情况,以说明如何在某些近似下使用线性系统方法来预测和分析这样一个系统的行为。分析包括计算(n*n)混合耦合器中的场幅,以及描述在相分集方案中如何连接这些耦合器以获得所需的光学元件。
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