论文标题

2D VDW材料中的各向异性极化子

Anisotropic polaritons in 2D vdW materials

论文作者

Shabbir, Babar, Ma, Weiliang, Bao, Qiaoliang

论文摘要

红外光学和纳米光子学领域的最重大进展也许是通过在二维材料中实现偏振子实现的,从而提供了最大的光限制功能。天然范德华材料中的平面内双曲线的最近突破性发现揭示了最令人兴奋的光学特性,可实现面内各向异性分散体。然而,面内各向异性分散的最吸引人的特征是在纳米尺度上操纵极化子。这一开发已经开辟了一个新的机会窗口,以开发具有前所未有的控制的独特纳米光子设备。本章将重点介绍这些发展,重点是基本理解和对近场范围内平面各向异性极化子的真实空间可视化的进展。最后一部分将以这个快速新兴地区的未来前景结束。

Perhaps the most significant progress to the field of infrared optics and nanophotonics has been made through the real space realisation of polaritons in two-dimensional materials that provide maximum light confinement functionalities. The recent breakthrough discovery of in-plane hyperbolicity in the natural van der Waals material has revealed a most exciting optical property which enable an in-plane anisotropic dispersion. Yet, the most intriguing feature of in-plane anisotropic dispersion is the manipulation of polaritons at the nano scale. This development has opened a new window of opportunity in order to develop unique nanophotonic devices with unprecedented controls. This chapter will cover these developments with focus on fundamental understandings and progress of real space visualisation of in-plane anisotropic polaritons in the near-field range. The last section will conclude with the future prospects of this rapidly emerging area.

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