材料科学
光电子学
电致发光
极化(电化学)
波前
指向性
雷
光学
电介质
晶体管
发光二极管
波长
纳米技术
计算机科学
电信
电气工程
物理
电压
物理化学
图层(电子)
化学
工程类
天线(收音机)
作者
Maciej Klein,Yutao Wang,Jingyi Tian,Son Tung Ha,Ramón Paniagua‐Domínguez,Arseniy I. Kuznetsov,Giorgio Adamo,Cesare Soci
标识
DOI:10.1002/adma.202207317
摘要
Emerging immersive visual communication technologies require light sources with complex functionality for dynamic control of polarization, directivity, wavefront, spectrum, and intensity of light. Currently, this is mostly achieved by free space bulk optic elements, limiting the adoption of these technologies. Flat optics based on artificially structured metasurfaces that operate at the sub-wavelength scale are a viable solution, however, their integration into electrically driven devices remains challenging. Here, a radically new approach to monolithic integration of a dielectric metasurface into a perovskite light-emitting transistor is demonstrated. It is shown that nanogratings directly structured on top of the transistor channel yield an 8-fold increase of electroluminescence intensity and dynamic tunability of polarization. This new light-emitting metatransistor device concept opens unlimited opportunities for light management strategies based on metasurface design and integration.
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