论文标题

偏振化的钙钛矿发光元译者

Polarization-Tunable Perovskite Light-Emitting Metatransistor

论文作者

Klein, Maciej, Wang, Yutao, Tian, Jingyi, Ha, Son Tung, Paniagua-Domínguez, Ramón, Kuznetsov, Arseniy I., Adamo, Giorgio, Soci, Cesare

论文摘要

新兴的沉浸式视觉通信技术需要具有复杂功能的光源,以动态控制光,波前,光谱和光的强度。当前,这主要是通过自由空间散装元件来实现的,从而限制了这些技术的采用。基于人工结构化的跨波长量表的平坦光学元件是可行的解决方案,但是它们集成到电动驱动器件中仍然具有挑战性。在这里,我们演示了将介电元面整合到钙钛矿发光晶体管中的整体整合的根本新方法。我们表明,直接在晶体管河道顶部结构的纳米仪产生了8倍的电致发光强度和极化的动态可调性。这款新的发光元透射设备概念为基于元图设计和集成的光管理策略打开了无限的机会。

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 we demonstrate a radically new approach of monolithic integration of a dielectric metasurface into a perovskite light-emitting transistor. We show 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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