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Explaining negative refraction without negative refractive indices

机译:解释负折射而没有负折射率

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Negative refraction through a triangular prism may be explained without assigning a negative refractive index to the prism by using array theory. For the case of a beam incident upon the wedge, the array theory accurately predicts the beam transmission angle through the prism and provides an estimate of the frequency interval at which negative refraction occurs. The hypotenuse of the prism has a staircase shape because it is built of cubic unit cells. The large phase delay imparted by each unit cell, combined with the staircase shape of the hypotenuse, creates the necessary conditions for negative refraction. Full-wave simulations using the finite-difference timedomain method show that array theory accurately predicts the beam transmission angle. (C) 2018 Optical Society of America
机译:可以通过使用阵列理论来解释通过三角形棱镜的负折射,而不将负折射率分配给棱镜。 对于入射在楔形物上的光束的情况下,阵列理论精确地通过棱镜预测光束传输角度,并提供对负折射发生的频率间隔的估计。 棱镜的斜边具有楼梯形状,因为它是由立方体单元格构建的。 每个单元电池赋予的大相延迟,与斜边的阶梯形状相结合,为负折射产生了必要的条件。 使用有限差异定时方法的全波模拟显示阵列理论准确地预测光束传输角度。 (c)2018年光学学会

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