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一种用于电磁诱导透明和慢光的新型平面超材料设计。

A novel planar metamaterial design for electromagnetically induced transparency and slow light.

作者信息

Wang Junqiao, Yuan Baohe, Fan Chunzhen, He Jinna, Ding Pei, Xue Qianzhong, Liang Erjun

出版信息

Opt Express. 2013 Oct 21;21(21):25159-66. doi: 10.1364/OE.21.025159.

Abstract

A novel planar plasmonic metamaterial for electromagnetically induced transparency and slow light characteristic is presented in this paper, which consists of nanoring and nanorod compound structures. Two bright modes in the metamaterial are induced by the electric dipole resonance inside nanoring and nanorod, respectively. The coupling between two bright modes introduces transparency window and large group index. By adjusting the geometric parameters of metamaterial structure, the transmittance of EIT window at 385 THz is about 60%, and the corresponding group index and Q factor can reach up to 1.2 × 10³ and 97, respectively, which has an important application in slow-light device, active plasmonic switch, SERS and optical sensing.

摘要

本文提出了一种用于电磁诱导透明和慢光特性的新型平面等离子体超材料,它由纳米环和纳米棒复合结构组成。超材料中的两种亮模式分别由纳米环和纳米棒内部的电偶极共振诱导产生。两种亮模式之间的耦合引入了透明窗口和大群折射率。通过调整超材料结构的几何参数,385太赫兹处的电磁诱导透明窗口的透过率约为60%,相应的群折射率和品质因数分别可达1.2×10³和97,这在慢光器件、有源等离子体开关、表面增强拉曼散射和光学传感方面具有重要应用。

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