Hauss Julian, Bocksrocker Tobias, Riedel Boris, Lemmer Uli, Gerken Martina
Light Technology Institute, Karlsruhe Institute of Technology, Kaiserstr 12, D-76131 Karlsruhe, Germany.
Opt Express. 2011 Jul 4;19 Suppl 4:A851-8. doi: 10.1364/OE.19.00A851.
Bragg gratings incorporated into organic light-emitting diodes (OLEDs) establish a coupling between waveguide modes and useful light (leaky modes). Here we demonstrate that the net coupling direction depends on the OLED stack design. We fabricated two different device structures with gold Bragg gratings. Angle resolved electroluminescence spectra were recorded. For the first device peaks of enhanced emission due to the Bragg grating are observed corresponding to a net energy transfer in direction of the leaky modes. The second device, on the other hand, exhibits dips in the emission spectrum. This reversed direction of energy transfer from the leaky modes to the waveguide modes is explained considering transfer matrix simulations of modal intensity distributions and device emission simulations. An OLED efficiency enhancement is only achieved, if the waveguide mode extraction is dominant.
集成到有机发光二极管(OLED)中的布拉格光栅在波导模式和有用光(泄漏模式)之间建立了耦合。在此我们证明,净耦合方向取决于OLED堆栈设计。我们制造了两种带有金布拉格光栅的不同器件结构。记录了角度分辨电致发光光谱。对于第一个器件,观察到由于布拉格光栅导致的发射增强峰,这对应于向泄漏模式方向的净能量转移。另一方面,第二个器件的发射光谱出现凹陷。考虑到模式强度分布的传输矩阵模拟和器件发射模拟,解释了从泄漏模式到波导模式的这种能量转移反向。只有当波导模式提取占主导时,才能实现OLED效率的提高。