Yan Yinzhou, Zeng Yong, Wu Yan, Zhao Yan, Ji Lingfei, Jiang Yijian, Li Lin
Opt Express. 2014 Sep 22;22(19):23552-64. doi: 10.1364/OE.22.023552.
Here we report strong enhancement in ultraviolet-photoluminescence (UV-PL) of ZnO thin films (grown on a SiC substrate) covered by monolayer dielectric fused silica or polystyrene microspheres with diameters ranging from 0.5 to 7.5 μm. The excited light scatted in the film is collected by the microspheres to stimulate whispering gallery modes, by which the internal quantum efficiency of spontaneous emission is enhanced. Meanwhile, the microsphere monolayer efficiently couples emitted light energy from the luminescent film to the far-field for PL detection. A UV-PL enhancement up to 10-fold via a 5-µm-diameter microsphere monolayer is experimentally demonstrated in this work. The unique optical property of microsphere in photoluminescence (PL) enhancement makes them promising for high-sensitivity PL measurements as well as design of photoelectric devices with low loss and high efficiency.
在此,我们报道了在直径为0.5至7.5μm的单层介电熔融石英或聚苯乙烯微球覆盖的(生长在SiC衬底上的)ZnO薄膜的紫外光致发光(UV-PL)方面有显著增强。在薄膜中散射的激发光被微球收集以激发回音壁模式,通过该模式自发发射的内量子效率得以提高。同时,微球单层有效地将来自发光薄膜的发射光能耦合到远场用于PL检测。在这项工作中,通过实验证明了经由直径5μm的微球单层可使UV-PL增强高达10倍。微球在光致发光(PL)增强方面的独特光学性质使其有望用于高灵敏度PL测量以及低损耗、高效率的光电器件设计。