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Two-dimensional crystals: Managing light for optoelectronics

机译:二维晶体:为光电管理光

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摘要

Semiconducting two-dimensional (2D) crystals such as MoS_2 and WSe_2 exhibit unusual optical properties that can be exploited for novel optoelectronics ranging from flexible photovoltaic cells to harmonic generation and electro-optical modulation devices. Rapid progress of the field, particularly in the growth area, is beginning to enable ways to implement 2D crystals into devices with tailored functionalities. For practical device performance, a key challenge is to maximize light-matter interactions in the material, which is inherently weak due to its atomically thin nature. Light management around the 2D layers with the use of plasmonic nanostructures can provide a compelling solution.
机译:诸如MoS_2和WSe_2之类的半导体二维(2D)晶体具有异常的光学特性,可用于从柔性光伏电池到谐波产生和电光调制设备的新型光电技术。该领域的快速发展,特别是在增长领域,已开始使人们能够将2D晶体实现到具有定制功能的设备中。对于实用的设备性能,一个关键的挑战是使材料中的光-物质相互作用最大化,由于该物质的原子薄性,该物质固有地弱。使用等离子纳米结构在2D层周围进行光管理可以提供引人注目的解决方案。

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