Enhanced Faraday effects of magneto-plasmonic crystals with plasmonic hexagonal hole arrays

Author:

Wang Zhiyu1,Wang Ziyun1ORCID,Gao Mengyao1,Kong Lijing1,Lan Jinshen1,Zhao Jingtian1,Long Peng1,Kang Junyong1,Zheng Xuanli1,Huang Shengli1,Li Shuping1

Affiliation:

1. Jiujiang Research Institute, Xiamen University

Abstract

Magneto-optical (MO) properties of the bilayed Au/BIG and trilayered Au/BIG/Au magneto-plasmonic crystals (MPCs) were analyzed by the finite-difference time-domain method. In contrast to the low deflection angle and transmission of the smooth thin film, all the heterostructures with perforated holes in the top Au film displayed a similar trend with two strong resonant bands in Faraday rotation and transmittance in the near infrared wavelength range. The bands and electric distribution relative to the component and hole structure were revealed. The MPC with plasmonic hexagonal holes was found to own superior Faraday effects with distinctive anisotropy. The evolution of the resonant bands with the size and period of hexagonal holes, the thickness of different layers, and the incident light polarization was illustrated. The Faraday rotation of the optimized bilayed and trilayered hexagonal MPCs was improved 15.3 and 17.5 times, and the transmittance was enhanced 12.1 and 11.1 folds respectively at the resonant wavelength in comparison to the continuous Au/BIG film, indicating that the systems might find potential application in MO devices.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Natural Science Foundation of Jiangxi Province

XMU Training Program of Innovation and Enterpreneurship for Undergraduates

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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