材料科学
光学
圆二色性
折射率
二色性
光电子学
磁圆二色性
相位匹配
衰减系数
非线性光学
光子晶体
圆极化
分束器
可见光谱
光学材料
激光束
光谱学
双折射
衍射
吸收(声学)
光散射
全内反射
振动圆二色性
吸收光谱法
摄影术
线性二色性
作者
Xinjiang Shu,Zeyu Wu,XIAN HUI HUANG,Zhengqi Liu,Yanliang He,Guiqiang Liu,Juan Chen
出处
期刊:Optics Letters
[Optica Publishing Group]
日期:2026-04-07
卷期号:51 (9): 2540-2540
摘要
The strong circular dichroism (CD) of chiral structures is essential in applications such as sensing, polarization manipulation, and imaging. However, to achieve strong CD for practical applications in most chiral metamaterials and metasurfaces, the symmetry of the structure must be deliberately broken, which greatly increases the complexity and process errors of micro-nano fabrication. Here, we achieve the multi-wavelength excellent CD governed by a pair of chiral bound states in the continuum (BICs) and a pair of chiral quasi-BICs in a magneto-optical photonic crystal (MO PhC) slab without structural symmetry breaking. By applying an external magnetic field instead of breaking the structural symmetry, both the chiral BICs and the quasi-BICs exhibit high Q -factors and CD values, with the Q -factors of up to 10 6 and 10 3 and the maximum CD values of up to 0.98 and 0.99, respectively. Furthermore, the results show that the Q -factor of the chiral BICs/quasi-BICs perfectly aligns with a linear function relationship with the external magnetic field, thereby enabling the tunable quantitative Q -factor. The performance of the proposed MO PhC at four wavelengths is comparable to that of traditional single-wavelength chiral structures, giving it significant prospects for various applications, including optical security, chiral lasers, and chiral optoelectronic devices.
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