论文标题

连续体和零索引的绑定状态:审查

Bound States in Continuum and Zero-Index Metamaterials: A Review

论文作者

Peng, Yu, Liao, Shaolin

论文摘要

连续体(BICS)中的绑定状态是波浪,即使它们与连续的辐射波频谱共存,它们可以将能量带走。他们的存在违反了传统的智慧。尽管BICS首先是在量子力学中提出的,但它们是一种通用波浪现象,此后已在电磁波,空气中的声波,水波和固体中的弹性波中鉴定出来。这些状态已在广泛的材料系统中进行了研究,例如压电材料,介电光子晶体,光学波导和纤维,量子点,石墨烯和拓扑绝缘子。在这篇综述中,我们描述了该领域的最新发展,重点是导致在看似非常不同的材料和波浪类型的物理机制。我们还讨论了实验实现,现有应用程序和未来工作的指示。最后,我们介绍了我们最近为设计一种基于硅(SI)的新型Mu-near-Zero(UNZ)超材料的努力,从而通过多种损耗通道的破坏性干扰来减少辐射损失,从而导致连续体的界限。该设计由SI支柱阵列组成。通过调整包括半径,螺距和高度在内的单位细胞尺寸,我们可以消除平面外辐射。

Bound states in the continuum (BICs) are waves that remain localized even though they coexist with a continuous spectrum of radiating waves that can carry energy away. Their very existence defies conventional wisdom. Although BICs were first proposed in quantum mechanics, they are a general wave phenomenon and have since been identified in electromagnetic waves, acoustic waves in air, water waves and elastic waves in solids. These states have been studied in a wide range of material systems, such as piezoelectric materials, dielectric photonic crystals, optical waveguides and fibers, quantum dots, graphene and topological insulators. In this Review, we describe recent developments in this field with an emphasis on the physical mechanisms that lead to BICs across seemingly very different materials and types of waves. We also discuss experimental realizations, existing applications and directions for future work. At last, we present our recent effort to design a novel type of silicon (Si) based mu-Near-Zero (uNZ) metamaterials that reduces radiative loss through destructive interference of multiple loss channels, resulting in a bound state in the continuum. This design consists of Si pillars array. By adjusting the unit-cell dimensions including radius, pitch and height, we can eliminate the out-of-plane radiation.

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