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Two-dimensional imaging in hyperbolic media–the role of field components and ordinary waves

机译:双曲介质中的二维成像–场分量和普通波的作用

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摘要

We study full vector imaging of two dimensional source fields through finite slabs of media with extreme anisotropy, such as hyperbolic media. For this, we adapt the exact transfer matrix method for uniaxial media to calculate the two dimensional transfer functions and point spread functions for arbitrary vector fields described in Cartesian coordinates. This is more convenient for imaging simulations than the use of the natural, propagation direction-dependent TE/TM basis, and clarifies which field components contribute to sub-diffraction imaging. We study the effect of ordinary waves on image quality, which previous one-dimensional approaches could not consider. Perfect sub-diffraction imaging can be achieved if longitudinal fields are measured, but in the more common case where field intensities or transverse fields are measured, ordinary waves cause artefacts. These become more prevalent when attempting to image large objects with high resolution. We discuss implications for curved hyperbolic imaging geometries such as hyperlenses.
机译:我们通过具有极大各向异性的介质(例如双曲介质)的有限平板研究二维源场的全矢量成像。为此,我们将精确传递矩阵方法应用于单轴介质,以计算笛卡尔坐标中描述的任意矢量场的二维传递函数和点扩展函数。与使用自然的,依赖于传播方向的TE / TM基础相比,这对于成像仿真更为方便,并阐明了哪些场分量有助于亚衍射成像。我们研究了普通波对图像质量的影响,这是以前的一维方法无法考虑的。如果测量纵向场,则可以实现完美的亚衍射成像,但是在更常见的情况下,如果测量场强或横向场,则普通波会导致伪像。当试图以高分辨率成像大型物体时,这些现象变得更加普遍。我们讨论了弯曲的双曲线成像几何形状(例如超透镜)的含义。

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