Ultrafast Laser Laboratory, College of Precision Instrument and Optoelectronics Engineering, Key Laboratory of Optoelectronic Information Technology (Ministry of Education), Tianjin University, Tianjin, China.
Opt Lett. 2013 Jun 15;38(12):2053-5. doi: 10.1364/OL.38.002053.
Subwavelength antireflective micropyramid structures, designed by rigorous coupled-wave analysis and fabricated by precision micromachining, are used to enhance the terahertz (THz) radiation output of optical rectification in GaP crystal-based emitters. An average 16% increase in the THz radiation power emitted by a 3 mm GaP crystal is experimentally demonstrated using an antireflective micropyramid grating with a period of 60 μm and a base angle of 55.5°. Optimized pyramidal-frustum gratings are shown to operate as highly efficient antireflective structures within an ultrabroadband range of 0.5-5 THz.
亚波长抗反射微金字塔结构,通过严格的耦合波分析设计,并通过精密微加工制造,用于增强基于 GaP 晶体的发射器中光整流的太赫兹 (THz) 辐射输出。实验证明,使用周期为 60μm、基底角度为 55.5°的抗反射微金字塔光栅,可使 3mm GaP 晶体发射的 THz 辐射功率平均增加 16%。优化后的金字塔截棱台光栅在 0.5-5THz 的超宽带范围内表现出高效的抗反射结构。