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Smallest flattop focus by polarization engineering

机译:通过极化工程实现的最小平顶聚焦

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摘要

Spatial engineering of polarization as a new method of beam shaping is analyzed by using scalar diffraction theory. For the one-dimensional case, it is shown that the smallest flattop far-field distribution can be obtained by adopting a linear polarization that changes direction as a linear function of location in the pupil plane. The resulting light field is functionally equivalent to a cosinusoidal function modulation of the wavefront but maintains high efficiency. This polarization beam shaping technique proves to be highly useful in applications where diffraction effects need to be taken into account. The extension of this technique to two-dimensional beam shaping is also demonstrated.
机译:利用标量衍射理论,分析了极化的空间工程作为光束整形的一种新方法。对于一维情况,显示出可以通过采用改变方向作为光瞳平面中位置的线性函数的线性极化来获得最小的平顶远场分布。产生的光场在功能上等效于波前的余弦函数调制,但保持了高效率。事实证明,这种偏振光束整形技术在需要考虑衍射效应的应用中非常有用。还证明了该技术对二维波束成形的扩展。

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