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Review of optical properties of two-dimensional transition metal dichalcogenides

机译:二维过渡金属二卤化物的光学性质综述

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Two dimensional (2D) materials have become a growing subject in the last 15 years mainly due to the isolation of graphene, which created a completely different class of material based on its unique, monolayer design. Since then, various stable materials of few atoms thick are showing emerging capabilities in optical electronics and photonics. Semiconducting monolayers of transition metal dichalcogenides (TMDs) such as MoS_2, Mo_(1-x)W_xS_2, and WS_2 exhibit direct electronic band gaps; bulk crystals display indirect band gaps. Interestingly, these 2D materials show significant light interaction over a broad bandwidth ranging from infrared to ultraviolet wavelengths. The materials allow photodetection in this bandwidth without the need of cooling, thus creating new potential for uncooled detection. In this review, we discuss various 2D materials and their interaction with light for photodetection applications.
机译:在过去的15年中,二维(2D)材料已经成为一个日益增长的主题,这主要是由于石墨烯的隔离,基于其独特的单层设计,它创造了一种完全不同的材料类别。从那时起,各种原子数很少的稳定材料在光学电子和光子学中显示出新兴的功能。诸如MoS_2,Mo_(1-x)W_xS_2和WS_2之类的过渡金属二硫化氢(TMD)半导体单层表现出直接的电子带隙。块状晶体显示出间接带隙。有趣的是,这些2D材料在从红外到紫外波长的较宽带宽上显示出显着的光交互作用。这些材料无需冷却即可在此带宽内进行光检测,从而为未冷却的检测创造了新的潜力。在这篇综述中,我们讨论了各种2D材料及其与光的相互作用,以用于光电检测应用。

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