Cheng Bo, Zou Yuxiao, Song Guofeng
Institute of Semiconductors, Chinese Academy of Sciences, Beijing, 100083, China.
College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing, 100049, China.
Heliyon. 2024 Nov 8;10(22):e40143. doi: 10.1016/j.heliyon.2024.e40143. eCollection 2024 Nov 30.
A study is conducted on a GaAs-based high-contrast subwavelength chiral metasurface (HCCM) designed for 1064 nm. The metasurface integrates a high-contrast subwavelength grating (HCG) for TM mode modulation, a SiO support layer, and a compact quarter-waveplate (QWP) to convert linearly polarized light to circularly polarized light. The HCG achieves ultra-high reflectivity at 1064 nm, attributed to the large refractive index contrast between the Si grating and SiO2 layer. The designed HCCM has a reflectivity of more than 99 % for the TM mode and less than 80 % for the TE waves in the wavelength range of 1050 nm-1085nm, and it can also excite the circularly polarized light with an absolute error of less than 0.03 at the transmitting end in the case of the 1064 nm TM wavelength. These results suggest that circular dichroic metasurfaces could offer a promising approach for photonic manipulation in circular polarization VCSELs, potentially reducing the manufacturing challenges and costs associated with traditional methods.
对一种为1064纳米设计的基于砷化镓的高对比度亚波长手性超表面(HCCM)进行了研究。该超表面集成了用于TM模式调制的高对比度亚波长光栅(HCG)、一个SiO支撑层和一个紧凑的四分之一波片(QWP),以将线偏振光转换为圆偏振光。HCG在1064纳米处实现了超高反射率,这归因于硅光栅和SiO2层之间的大折射率对比度。所设计的HCCM在1050纳米至1085纳米波长范围内,对于TM模式的反射率超过99%,对于TE波的反射率小于80%,并且在1064纳米TM波长的情况下,它还可以在发射端激发绝对误差小于0.03的圆偏振光。这些结果表明,圆二向色性超表面可为圆偏振垂直腔面发射激光器中的光子操控提供一种有前景的方法,有可能减少与传统方法相关的制造挑战和成本。