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Negative refraction and subwavelength focusing using photonic crystals

机译:使用光子晶体的负折射和亚波长聚焦

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We review certain novel optical properties of two-dimensional dielectric photonic crystals (PCs) which exhibit negative refraction behavior. We investigate two mechanisms which utilize the band structure of the PC and lead to a negative effective index of refraction (n_(eff) < 0). The negative refraction phenomenon is demonstrated experimentally and by simulations when the incident beam couples to a photonic band with n_(eff) < 0. Further, the PC slab acts like a focusing lens to an omnidirectional source where the properties of focusing depends on the details of the band structure. In one case, by utilizing the TM polarized first band, an image of the source can be formed in the vicinity of the interface with subwavelength resolution. In another case, a TE polarized upper band is used which is able to focus the omnidirectional field far away from the interface with a resolution on par with the wavelength. In the latter case, we explicitly show the flat lens behavior of the structure. These examples indicate that PC based lenses can surpass limitations of conventional lenses and greatly enhance and extend optics applications.
机译:我们审查了二维介电光子晶体(PCs)表现出负折射行为的某些新颖的光学性质。我们研究了两种利用PC的能带结构并导致负有效折射率(n_(eff)<0)的机制。当入射光束耦合到n_(eff)<0的光子带时,通过实验和模拟证明了负折射现象。此外,PC平板像全向聚焦源的聚焦透镜一样,聚焦的特性取决于细节。带结构的。在一种情况下,通过利用TM偏振的第一频带,可以在具有亚波长分辨率的界面附近形成源的图像。在另一种情况下,使用TE偏振上频带,该频带能够将全向场聚焦在远离界面的位置,且分辨率与波长相等。在后一种情况下,我们明确显示了该结构的平面透镜行为。这些示例表明,基于PC的镜头可以超越传统镜头的局限性,并极大地增强和扩展了光学应用。

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