Xu Chunhao, Chao Minghao, Liu Zhizhong, Liu Qingsong, Zhang Wenjing, Zhuang Lingyun, Cheng Bo, Jiang Botao, Liu Jietao, 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.
Nanomaterials (Basel). 2024 Aug 28;14(17):1405. doi: 10.3390/nano14171405.
We propose a photonic crystal (PC) nanostructure that combines bound states In the continuum (BIC) with a high-quality factor up to 10 for emitting circularly polarized beams. We break the in-plane inversion symmetry of the unit cell by tilting the triangular hole of the hexagonal lattice, resulting in the conversion of a symmetrically protected BIC to a quasi-BIC. High-quality circularly polarized light is obtained efficiently by adjusting the tilt angles of the hole and the thickness of the PC layer. By changing the hole's geometry in the unit cell, the Q-factor of circularly polarized light is further improved. The quality factor can be adjusted from 6.0 × 10 to 1.7 × 10 by deliberately changing the shape of the holes. Notably, the proposed nanostructure exhibits a large bandgap, which significantly facilitates the generation of stable single-mode resonance. The proposed structure is anticipated to have practical applications in the field of laser technology, particularly in the advancement of low-threshold PC surface emitting lasers (PCSELs).
我们提出了一种光子晶体(PC)纳米结构,它将连续统中的束缚态(BIC)与高达10的高品质因子相结合,用于发射圆偏振光束。我们通过倾斜六边形晶格的三角形孔来打破晶胞的面内反演对称性,从而将对称保护的BIC转换为准BIC。通过调整孔的倾斜角度和PC层的厚度,可以有效地获得高质量的圆偏振光。通过改变晶胞中孔的几何形状,圆偏振光的品质因子进一步提高。通过故意改变孔的形状,品质因子可以从6.0×10调整到1.7×10。值得注意的是,所提出的纳米结构具有较大的带隙,这显著促进了稳定单模共振的产生。预计所提出的结构在激光技术领域具有实际应用,特别是在低阈值PC表面发射激光器(PCSELs)的发展方面。