Strong chirality in twisted bilayer α-MoO3

手性(物理) 圆二色性 双层 极化(电化学) 圆极化 旋光 旋转(数学) 平面手性 镜像对称 材料科学 物理 光学 分子物理学 凝聚态物理 对称性破坏 结晶学 手征对称破缺 化学 对映选择合成 几何学 量子力学 物理化学 Nambu–Jona Lasinio模型 数学 催化作用 微带线 生物化学
作者
Biyuan Wu,Zhangxing Shi,Feng Wu,Mingjun Wang,Xiaohu Wu
出处
期刊:Chinese Physics B [IOP Publishing]
卷期号:31 (4): 044101-044101 被引量:21
标识
DOI:10.1088/1674-1056/ac3740
摘要

Chiral structures are promising in many applications, such as biological sensing and analytical chemistry, and have been extensively explored. In this paper, we theoretically investigate the chiral response of twisted bilayer α -MoO 3 . Firstly, the analytical formula for the transmissivity is derived when the structure is illuminated with circularly polarized plane waves. Furthermore, the results demonstrate that the twisted bilayer α -MoO 3 can excite the strong chirality with the maximum circular dichroism (CD) of 0.89. In this case, the chirality is due to the simultaneous breaking the rotational symmetry and mirror symmetry, which originates from the relative rotation of two α -MoO 3 layers. To better understand the physical mechanism, the polarization conversion between the left-hand circular polarization (LCP) and right-hand circular polarization (RCP) waves is discussed as well. Moreover, it is found that the structure can maintain the strong chirality (CD > 0.8) when the twisted angle varies from 69° to 80°, which effectively reduces the strictness in the requirement for rotation angle. In addition, the CD can be larger than 0.85 when the incidence angle of circularly polarized plane wave is less than 40°, implying that the chirality is robust against the angle of incidence. Our work not only provides an insight into chirality induced by the twisted bilayer α -MoO 3 , but also looks forward to applications in biological sensing.
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