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Simple geometric interpretation of signal evolution in phase-sensitive fibre optic parametric amplifier

机译:相敏光纤参数放大器中信号演化的简单几何解释

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摘要

Visualisation of complex nonlinear equation solutions is a useful analysis tool for various scientific and engineering applications. We have re-examined the geometrical interpretation of the classical nonlinear four-wave mixing equations for the specific scheme of a phase sensitive one-pump fiber optical parametric amplification, which has recently attracted revived interest in the optical communications due to potential low noise properties of such amplifiers. Analysis of the phase portraits of the corresponding dynamical systems provide valuable additional insight into field dynamics and properties of the amplifiers. Simple geometric approach has been proposed to describe evolution of the waves, involved in phase-sensitive fiber optical parametric amplification (PS-FOPA) process, using a Hamiltonian structure of the governing equations. We have demonstrated how the proposed approach can be applied to the optimization problems arising in the design of the specific PS-FOPA scheme. The method considered here is rather general and can be used in various applications.
机译:复杂非线性方程解的可视化是各种科学和工程应用的有用分析工具。我们已经针对相敏单泵光纤光学参量放大的特定方案重新研究了经典非线性四波混频方程的几何解释,由于其潜在的低噪声特性,近来它引起了人们对光通信的兴趣。这样的放大器。对相应动力学系统的相图的分析为放大器的场动力学和特性提供了有价值的附加见解。已经提出了一种简单的几何方法来描述波的演化,并使用控制方程的哈密顿结构来描述相敏光纤参量放大(PS-FOPA)过程。我们已经证明了所提出的方法如何可以应用于特定PS-FOPA方案设计中出现的优化问题。这里考虑的方法相当笼统,可以在各种应用中使用。

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