Negative diffraction by a periodically modulated loss

M. Botey, N. Kumar, R. Herrero, L. Maigyte, R. Picó, K. Staliūnas
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Abstract

We show how a periodic modulation of loss on the wavelength scale provides negative diffraction propagation. In particular, we consider a 2D square arrangement of lossy cylinders embedded in air, with no index contrast. The phase-shifts accumulated in propagation trough such a structure, with flat-flat interfaces, are then compensated by normal diffraction in air leading to a substantial focalization of a light beam behind the crystal. The transmitted light intensity map exhibits a window of high transmission as a result of anisotropic loss provided by the periodicity. The effect is accounted buy the dispersion curves obtained by a coupled mode expansion of Maxwell equations and numerical experiments. The predicted phenomenon is expected to be generic for spatially modulated materials, and indeed we show that the results can be extended to acoustics.
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周期性调制损耗的负衍射
我们展示了损耗在波长尺度上的周期性调制如何提供负衍射传播。特别是,我们考虑嵌入空气中的有损圆柱体的二维方形排列,没有指数对比。通过这种具有平面界面的结构在传播中积累的相移,然后由空气中的法向衍射补偿,导致光束在晶体后面的实质性聚焦。透射光强图由于周期性提供的各向异性损失而显示出一个高透射窗口。用麦克斯韦方程组的耦合模式展开得到色散曲线,并通过数值实验说明了这种效应。预测的现象预计是普遍的空间调制材料,我们确实表明,结果可以扩展到声学。
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