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Method for arbitrary phase transformation by a slab based on transformation optics and the principle of equal optical path

机译:基于变换光学和等光程原理的平板任意相位变换方法

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The optical path lengths travelled by rays across a wavefront essentially determine the resulting phase front irrespective of the shape of a medium according to the principle of equal optical path. Thereupon we propose a method for the transformation between two arbitrary wavefronts by a slab, i.e. the profile of the spatial separation between the two wavefronts is taken to be transformed to a plane surface. Interestingly, for the mutual conversion between planar and curved wavefronts, the method reduce to an inverse transformation method in which it is the reversed shape of the desired wavefront that is converted to a planar one. As an application, three kinds of phase transformation are realized and it is found that the transformation on phase is able to realize some important properties such as phase reversal or compensation, self focusing, and expanding or compressing beams, which are further confirmed by numerical simulations. The slab can be applied to realizing compact electromagnetic devices for which the values of the refractive index or the permittivity and permeability can be high or low, positive or negative, or near zero, depending on the choice of coordinate transformations.
机译:根据相等的光路原理,无论介质的形状如何,光线穿过波前传播的光路长度基本上决定了最终的相前。因此,我们提出了一种通过平板在两个任意波前之间进行变换的方法,即,将两个波前之间的空间间隔的轮廓转换为平面。有趣的是,对于平面波前与弯曲波前之间的相互转换,该方法简化为一种逆变换方法,其中将所需波前的倒相形状转换为平面波前。作为一种应用,实现了三种相变,发现相变能够实现一些重要的特性,例如相变或补偿,自聚焦,扩展或压缩光束,这些都通过数值模拟得到了进一步证实。 。该平板可用于实现紧凑的电磁装置,对于这些电磁装置,取决于坐标变换的选择,其折射率或介电常数和磁导率的值可以是高或低,正或负或接近零。

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