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Justification and analysis of OAM-carrying electromagnetic fields spinor propagation equation for dispersive media

机译:分散介质中携带OAM的电磁场自旋轴传播方程的合理性与分析

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In this paper we introduce a novel approach for analysis of the information transmission process in mode-division-multiplexed (MDM) optical fiber communications. This approach is based on the representation of Maxwell's equations in the form of quantum-mechanical Schrodinger and Dirac equations. This representation allows application of the well-developed quantum electrodynamics formalism for the case of classical EM fields and reveals key properties of the optical fiber mode distribution in MDM systems following from the total angular momentum conservation law. We demonstrate the need of using coupled mode compositions instead of separate eigenmodes for realization of MDM communications based on angular momentum transfer. Such coupled modal compositions obey the law of total angular momentum conservation within spatial transformation and allow information transmission. Spinor propagation equation of EM fields carrying angular orbital momentum in dispersive media is also given.
机译:在本文中,我们介绍了一种新颖的方法来分析模分复用(MDM)光纤通信中的信息传输过程。这种方法基于以量子力学薛定inger方程和狄拉克方程表示的麦克斯韦方程组。该表示法允许将发达的量子电动力学形式学应用于经典EM场,并根据总角动量守恒定律揭示MDM系统中光纤模式分布的关键特性。我们证明了需要使用耦合模式合成代替单独的本征模式来实现基于角动量传递的MDM通信。这种耦合的模态合成服从空间变换内的总角动量守恒律,并允许信息传输。给出了在分散介质中携带角动量的电磁场的自旋传播方程。

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