Yang Chiyu, Zhao Bo, Cai Wenshan, Zhang Zhuomin M
Opt Express. 2022 Jan 17;30(2):3035-3046. doi: 10.1364/OE.445803.
As a three-dimensional topological phase of matter, Weyl semimetals possess extremely large gyrotropic optical response in the mid-infrared region, leading to the strong chiral anomaly. This study proposes a circular polarizer design with a double-WSM-layer structure. It is theoretically shown that the proposed polarizer possesses a high circular polarization efficiency and high average transmittance in the wavelength region from 9 µm to 15 µm at incidence angles up to 50°. The modified 4 × 4 matrix method is used to calculate the circularly polarized transmittance of Weyl semimetals in thin-film or multilayer structures. The temperature dependence on the transmittance is also examined to demonstrate the flexibility of the proposed polarizer in a varying temperature environment. This study reveals the technological prospect that Weyl semimetals are promising candidates for high-performance circular polarizers in infrared spectroscopy and polarimetry.
作为一种三维拓扑物相,外尔半金属在中红外区域具有极大的旋光光学响应,从而导致强烈的手征反常。本研究提出了一种具有双外尔半金属层结构的圆偏振器设计。理论表明,所提出的偏振器在高达50°的入射角下,在9微米至15微米的波长范围内具有高圆偏振效率和高平均透过率。采用改进的4×4矩阵方法来计算外尔半金属在薄膜或多层结构中的圆偏振透过率。还研究了透过率对温度的依赖性,以证明所提出的偏振器在变化的温度环境中的灵活性。本研究揭示了外尔半金属有望成为红外光谱学和偏振测量中高性能圆偏振器的技术前景。