Lu Hai, Huang Meng, Shen Ke-Sheng, Zhang Jun, Xia Shi-Qiang, Dong Chao, Xiong Zong-Gang, Zhu Ting, Wu Da-Peng, Zhang Bo, Zhang Xian-Zhou
Engineering Laboratory for Optoelectronic Technology and Advanced Manufacturing, Henan Normal University, Xinxiang, 453007, China.
Xinxiang Baihe O.E. Co., Ltd, Xinxiang, 453731, China.
Nanoscale Res Lett. 2018 Oct 22;13(1):328. doi: 10.1186/s11671-018-2763-3.
In this research, we studied enhanced diffuse reflectance that can be achieved by excitations of multiple-scattering in a hybrid micro-structured titanium dioxide coating. Conventional approaches to obtain diffuse reflection structure rely heavily on exciting the scattering of randomly textured surface, whereas here, we reveal numerically and experimentally that, besides interface scattering, bulk scattering of ordered-disordered hybrid structure can be also employed to obtain highly efficient diffuse reflector. The diffuse reflectance over the measured wavelength region increases significantly with thickness, while angle and polarization-dependent specular reflections are suppressed. These results show the potential to be used as a highly efficient diffuse reflector or for applications in various advanced fields of photonics related to light extractions and diffusers.
在本研究中,我们研究了通过混合微结构二氧化钛涂层中的多次散射激发实现的增强漫反射。获得漫反射结构的传统方法严重依赖于激发随机纹理表面的散射,而在此,我们通过数值和实验揭示,除了界面散射外,有序-无序混合结构的体散射也可用于获得高效漫反射器。在测量波长范围内,漫反射率随厚度显著增加,同时角度和偏振相关的镜面反射受到抑制。这些结果表明其有潜力用作高效漫反射器或用于与光提取和扩散器相关的各种先进光子学领域。