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Rainbow Trapping in Hyperbolic Metamaterial Waveguide

机译:双曲超材料波导中的彩虹陷阱

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摘要

The recent reported trapped “rainbow” storage of light using metamaterials and plasmonic graded surface gratings has generated considerable interest for on-chip slow light. The potential for controlling the velocity of broadband light in guided photonic structures opens up tremendous opportunities to manipulate light for optical modulation, switching, communication and light-matter interactions. However, previously reported designs for rainbow trapping are generally constrained by inherent difficulties resulting in the limited experimental realization of this intriguing effect. Here we propose a hyperbolic metamaterial structure to realize a highly efficient rainbow trapping effect, which, importantly, is not limited by those severe theoretical constraints required in previously reported insulator-negative-index-insulator, insulator-metal-insulator and metal-insulator-metal waveguide tapers, and therefore representing a significant promise to realize the rainbow trapping structure practically.
机译:最近报道的使用超材料和等离激元渐变表面光栅捕获光的“彩虹”存储引起了片上慢光的极大兴趣。控制引导光子结构中宽带光的速度的潜力为操纵光以进行光调制,交换,通信和光物质相互作用开辟了巨大的机会。然而,先前报道的彩虹诱捕设计通常受到固有困难的限制,从而导致有限的实验实现这种吸引人的效果。在这里,我们提出了一种双曲线超材料结构,以实现高效的彩虹陷阱效应,重要的是,不受限于先前报道的绝缘子-负指数-绝缘子,绝缘子-金属-绝缘子和金属-绝缘子-金属波导逐渐变细,因此代表了在实际中实现彩虹捕获结构的重大希望。

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