Hsiao Fu-Li, Ni Chia-Ying, Tsai Ying-Pin, Chiang Ting-Wei, Yang Yen-Tung, Fan Cheng-Jui, Chang Hsuan-Ming, Chen Chien-Chung, Lee Hsin-Feng, Lin Bor-Shyh, Chan Kai-Chun, Chen Chii-Chang
Institute of Photonics, National Changhua University of Education, Changhua 500, Taiwan.
Institute of Imaging and Biomedical Photonics, National Yang Ming Chiao Tung University, Tainan City 711, Taiwan.
Nanomaterials (Basel). 2022 Jul 18;12(14):2454. doi: 10.3390/nano12142454.
Photonic crystals possess metastructures with a unique dispersion relation. An integrated optical circuit plays a crucial role in quantum computing, for which miniaturized optical components can be designed according to the characteristics of photonic crystals. Because the stable light transmission mode for a square waveguide is transverse electric or transverse magnetic polarization, we designed a half-waveplate element with a photonic crystal that can rotate the polarization direction of the light incident on a waveguide by 90°. Using the dispersion relation of photonic crystals, the polarization rotation length and the optical axis's angle of deviation from the electric field in the eigenmode can be effectively calculated. Polarization rotators designed on the basis of photonic crystal structures can effectively reduce the insertion loss of components and exhibit favorable polarization rotation performance.
光子晶体具有具有独特色散关系的亚结构。集成光学电路在量子计算中起着至关重要的作用,为此可以根据光子晶体的特性设计小型化光学元件。由于方形波导的稳定光传输模式是横向电偏振或横向磁偏振,我们设计了一种带有光子晶体的半波片元件,它可以将入射到波导上的光的偏振方向旋转90°。利用光子晶体的色散关系,可以有效地计算偏振旋转长度和本征模中光轴与电场的偏离角度。基于光子晶体结构设计的偏振旋转器可以有效降低元件的插入损耗,并表现出良好的偏振旋转性能。