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无需额外光学元件的实时光束整形。

Real-time beam shaping without additional optical elements.

作者信息

Fries Felix, Fröbel Markus, Ang Pen Yiao, Lenk Simone, Reineke Sebastian

机构信息

Dresden Integrated Center for Applied Physics and Photonic Materials (IAPP), Technische Universität Dresden, Nöthnitzer Straße 61, Dresden, 01187 Germany.

出版信息

Light Sci Appl. 2018 Jun 20;7:18. doi: 10.1038/s41377-018-0014-0. eCollection 2018.

Abstract

Providing artificial light and enhancing the quality of the respective light sources is of continued interest in the fields of solid state, condensed matter, and semiconductor physics. Much research has been carried out to increase the luminous efficiency, lifetime and colour stability of such devices. However, the emission characteristics of a given light source do not necessarily comply with today's often sophisticated applications. Here, beam shaping addresses the transformation of a given light distribution into a customized form. This is typically achieved by secondary optical elements often sporting elaborate designs, where the actual light source takes up only a small fraction of the system's volume. Such designs limit the final light source to a single permanent operation mode, which can only be overcome by employing mechanically adjustable optical elements. Here we show that organic light-emitting diodes (OLEDs) can enable real-time regulation of a beam shape without relying on secondary optical elements and without using any mechanical adjustment. For a red light-emitting two-unit OLED architecture, we demonstrate the ability to continuously tune between strongly forward and strongly sideward emission, where the device efficiency is maintained at an application-relevant level ranging between 6 and 8% of external quantum efficiency for any chosen setting. In combination with additional optical elements, customizable and tuneable systems are possible, whereby the tuning stems from the light source itself rather than from the use of secondary optics.

摘要

在固态、凝聚态和半导体物理领域,提供人造光并提高相应光源的质量一直是人们持续关注的问题。为了提高此类器件的发光效率、寿命和颜色稳定性,已经开展了大量研究。然而,给定光源的发射特性不一定符合当今通常复杂的应用需求。在此,光束整形解决了将给定光分布转换为定制形式的问题。这通常通过通常具有复杂设计的二次光学元件来实现,其中实际光源仅占据系统体积的一小部分。此类设计将最终光源限制为单一的永久运行模式,这只能通过采用机械可调光学元件来克服。在此,我们展示了有机发光二极管(OLED)能够在不依赖二次光学元件且不使用任何机械调节的情况下实现光束形状的实时调节。对于红色发光双单元OLED架构,我们展示了在强向前发射和强侧向发射之间连续调谐的能力,对于任何选定设置,器件效率保持在与应用相关的水平,外部量子效率在6%至8%之间。结合额外的光学元件,可以实现可定制和可调谐的系统,其中调谐源于光源本身而非二次光学元件的使用。

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