通过太赫兹元表面中的选择性对称破缺方法实现高质量因子准 BIC 模式

B. Bhowmik, Rohith Km, Samuel John, Shriganesh S. Prabhu, Gagan Kumar
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引用次数: 0

摘要

这项研究通过数值和实验提出了一种新方法,利用环形元分子体系中选择性对称破缺的独特方法,在太赫兹元分子(元原子组成)体系中激发具有高 Q 因子的 BIC 模式。传统的策略是均匀地破坏所有谐振器的对称性以激发准 BIC 模式,与此不同的是,这种创新技术只针对一半的单胞进行对称性扰动。这种选择性对称性破坏可最大限度地减少辐射损耗,并增强连续(准 BIC)模式中准束缚态的 Q 因子。通过简单的径向扰动,在环形元分子系统中实现了选择性对称破缺。结果表明,Q 系数有了显著提高,模拟值高达 107,与均匀对称破缺方法(Q 系数约为 25.80)相比有了显著提高。实验透射光谱和近场扫描图像有力地验证了这种策略性对称破缺方法下高 Q 值 BIC 模式的存在。这项工作为开发先进的太赫兹器件开辟了新的途径,在太赫兹领域的传感、滤波和非线性方面具有广阔的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-quality factor Quasi-BIC mode via selective symmetry-breaking approach in a terahertz metasurface
This study numerically and experimentally presents a novel approach to excite BIC mode with a high Q-factor in the THz meta-molecule (composition of metaatoms) system, leveraging a unique method of selective symmetry breaking in a ringshaped metamolecule system. Unlike conventional strategies that uniformly disrupt the symmetry across all resonators to excite a quasi-BIC mode, this innovative technique targets only half of the unit cell for symmetry perturbation. This selective symmetry breaking minimizes radiative losses and enhances the Q-factor of the quasi-bound states in continuum (quasi-BIC) modes. The selective symmetry breaking is achieved in a ring-shaped metamolecule system by simple radial perturbation. The results depict a notable improvement in the Q-factor, achieving values as high as 107 in simulation, a significant enhancement compared to the uniformly symmetry-breaking approach, which exhibits Q-factors around 25.80. The experimental transmission spectrum and the near-field scanning images firmly validate the existence of the high Q BIC mode under this strategic symmetry-breaking approach. This work may open new avenues for developing advanced THz devices with promising applications in sensing, filtering, and non-linearity in the THz domain.
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