物理
奇点
束缚态
平面的
电荷(物理)
拓扑(电路)
限制
联轴节(管道)
拓扑量子数
光子晶体
各向异性
对称(几何)
工作(物理)
经典力学
量子力学
理论物理学
作者
Jue Li,Haoye Qin,Wenjing Lv,Yuzhi Shi,Qian Li,Ben Li,Qinghua Song
标识
DOI:10.1002/lpor.202502358
摘要
ABSTRACT Bound states in the continuum (BICs) are nonradiative modes within the continuum, offering unique opportunities for wave control in open systems. While most BICs carry a unity charge, higher‐order BICs can enrich light–matter interaction through complex singularity structures and nontrivial topology. However, to date, such higher‐order BICs have only been realized in systems with higher rotational symmetry or higher energy bands, limiting practical implementation. Here, we propose a new mechanism to realize higher‐order topological BICs through mode coupling in a photonic crystal slab with only C 4 symmetry. By merging four pairs of exceptional points, we obtain a Dirac BIC with a topological charge of −3, exhibiting highly anisotropic radiation suppression and enhanced Q factors along specific directions over a broad wavevector range. This work provides a controllable route to engineer higher‐order BICs in simple planar devices, offering new freedoms for charge manipulations, higher‐dimensional topologies, and structured light generation.
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