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Far-field luminous intensity distribution depending on the outcoupling structure of organic light-emitting diodes

机译:远场发光强度分布取决于有机发光二极管的输出耦合结构

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The finite-difference time domain method was combined with the ray tracing technique to investigate the viewing angle characteristics of organic light-emitting diodes (OLEDs) with various optical structures for improving the outcoupling efficiency. The angular dependence of the far-field luminous intensity on OLEDs with a basic structure and on the one with scattering particles in the glass substrate exhibited an almost Lambertian distribution at their optimized conditions. The pillow lenses applied onto the front surface of the glass substrate made the intensity distribution complex with local-intensity maxima appear. This was attributed to the interactions between the curved lens surfaces and the rays emitted from the light source. This study suggests that both the microcavity in the organic layers and the optical structure for efficient outcoupling should be optimized to realize appropriate viewing angle characteristics for display or lighting applications.
机译:将时域有限差分法与射线追踪技术相结合,以研究具有各种光学结构的有机发光二极管(OLED)的视角特性,以提高输出耦合效率。远场发光强度对具有基本结构的OLED和在玻璃基板中具有散射粒子的OLED的角度依赖性在其优化条件下显示出几乎朗伯分布。施加在玻璃基板前表面上的枕形透镜使强度分布与局部强度最大值变得复杂。这归因于曲面透镜表面与光源发出的光线之间的相互作用。这项研究表明,应该优化有机层中的微腔和有效耦合的光学结构,以实现用于显示或照明应用的适当视角特性。

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