论文标题
二维材料的工程光子环境
Engineering photonic environments for two-dimensional materials
论文作者
论文摘要
一个引人入胜的光子平台,具有较小的设备尺度,快速运行速度以及低能消耗,这是二维(2D)材料,这要归功于它们的平面晶体结构和平面外量子限制。在该研究领域进一步发展的关键是能够修改2D材料的光学性能。修改通常来自材料本身,例如改变其化学成分。本文通过设计光子环境,回顾了相当少的探索但有希望的手段。这意味着可以直接与材料相互作用,而不是修改材料本身,而是操纵均匀和纳米结构的介电和金属环境。对于只有一个或几个原子厚的2D材料,与环境的相互作用可能非常有效。这篇综述总结了这种相互作用的三个自由度:弱耦合,强耦合和多功能性。此外,它还回顾了一个相对较小的工程概念,该概念通过图案直接应用于2D材料。受益于纳米光子学的迅速发展,光子环境的工程为重塑2D材料中的轻度互动提供了一种多功能和创造性的方法。
A fascinating photonic platform with a small device scale, fast operating speed, as well as low energy consumption is two-dimensional (2D) materials, thanks to their in-plane crystalline structures and out-of-plane quantum confinement. The key to further advancement in this research field is the ability to modify the optical properties of the 2D materials. The modifications typically come from the materials themselves, for example, altering their chemical compositions. This article reviews a comparably less explored but promising means, through engineering the photonic surroundings. Rather than modifying materials themselves, this means manipulates the dielectric and metallic environments, both uniform and nanostructured, that directly interact with the materials. For 2D materials that are only one or a few atoms thick, the interaction with the environment can be remarkably efficient. This review summarizes the three degrees of freedom of this interaction: weak coupling, strong coupling, and multi-functionality. Also, it reviews a relatively timing concept of engineering that directly applied to the 2D materials by patterning. Benefiting from the burgeoning development of nanophotonics, the engineering of photonic environments provides a versatile and creative methodology of reshaping light-matter interaction in 2D materials.