面内双曲声子极化子:材料、特性和纳米光子器件

Yunxiu Ma, Gang Zhong, Zhigao Dai, Qingdong Ou
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摘要

面内双曲声子极化子(HPhPs)是声子介导的混合电磁模式,尤其是在二维(2D)范德华(vdW)晶体中,由于其奇特的光学特性和广阔的纳米光子应用前景而日益受到关注。在此,我们从材料、光学特性和纳米光子器件等方面回顾了平面内 HPhPs 的最新进展。我们首先调查了最近发现的平面内各向异性 vdW 材料和自然表现出平面内 HPhPs 的块状晶体。然后讨论这些各向异性材料中 HPhPs 的基本特性,重点是传播方向性,如方向旋转、单向激发、渠化、负反射和负折射。最后,我们讨论了平面内 HPhPs 目前在纳米光子器件中的应用,并展望了平面内 HPhPs 在纳米光子芯片方面的未来发展。
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In-plane hyperbolic phonon polaritons: materials, properties, and nanophotonic devices
In-plane hyperbolic phonon polaritons (HPhPs) are phonon-mediated hybrid electromagnetic modes, particularly in two-dimensional (2D) van der Waals (vdW) crystals, which have attracted increasing attention because of their peculiar optical properties and promising nanophotonic applications. Here, we review the most recent advances in in-plane HPhPs in terms of materials, optical properties and nanophotonic devices. We begin with a survey of recently discovered in-plane anisotropic vdW materials and bulk crystals that naturally exhibit in-plane HPhPs. The fundamental properties of HPhPs in these anisotropic materials are then discussed, focusing on propagation directionality such as direction rotation, unidirectional excitation, canalization, negative reflection, and negative refraction. Finally, we discuss the present applications of in-plane HPhPs in nanophotonic devices and offer a perspective on future developments of in-plane HPhPs towards nanophotonic chips.
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