超材料
电介质
光学
量子点
物理
偶极子
自发辐射
光电子学
共振(粒子物理)
硅
凝聚态物理
电场
电磁场
材料科学
原子物理学
激光器
量子力学
作者
Jing Xiong,junqiao Wang,Xiangpeng Liu,Hao Zhang,Qiaoqiao Wang,Jingyi Sun,Baolin Zhang
出处
期刊:Optics Express
[The Optical Society]
日期:2024-04-22
卷期号:32 (11): 19910-19910
摘要
Dielectric nanostructures exhibit low-loss electrical and magnetic resonance, making them ideal for quantum information processing. In this study, the periodic double-groove silicon nanodisk (DGSND) is used to support the anapole state. Based on the distribution properties of the electromagnetic field in anapole states, the anapoles are manipulated by cutting the dielectric metamaterial. Quantum dots (QDs) are used to stimulate the anapole and control the amplification of the photoluminescence signal within the QDs. By opening symmetrical holes in the long axis of the nanodisk in the dielectric metamaterial, the current distribution of Mie resonance can be adjusted. As a result, the toroidal dipole moment is altered, leading to an enhanced electric field (E-field) and Purcell factor. When the dielectric metamaterial is deposited on the Ag substrate separated by the silicon dioxide (SiO
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