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Isolating the Gouy phase shift in a full physical-optics solution to the propagation problem

机译:将整个物理光学解决方案中的粪便相移分离到传播问题

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The Gouy phase shift has remained an object of fascination since its discovery by the eponymous scientist at the end of the nineteenth century. The reason behind this uninterrupted interest resides, at least in part, in the fact that the Gouy effect is to be found in the borderland between geometrical optics and diffractive behavior. Using purely mathematical arguments in a full electromagnetic solution to the propagation problem, it is possible to derive a formula where all the physical effects that we know must appear are laid bare, including the Gouy phase. Additionally, by discarding the field information, this formula retrieves the ray-tracing result, and in doing so vindicates the predictions that geometrical optics can make, of the ray mapping and optical path length accretion. The resulting analysis helps overcome the geometrical-physical optics dichotomy in our understanding of the Gouy phenomenon. (C) 2019 Optical Society of America
机译:自19世纪末的同名科学家发现以来,粪便迁移阶段迁移仍然是迷恋的对象。 这种不间断利益背后的原因至少部分地居住在地理光学和衍射行为之间的边疆效果中发现粪便效应。 在完全电磁解决方案中使用纯数学参数到传播问题,可以从我们所知道的所有物理效果都奠定裸露,包括粗糙阶段。 另外,通过丢弃现场信息,该公式检索光线跟踪结果,并且在这样做中,因此对地几何光学器件可以制造的预测,射线映射和光路长度增加。 由此产生的分析有助于克服我们对粪便现象的理解中的几何物理光学二分形式。 (c)2019年光学学会

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