Wang Zhiyu, Wang Ziyun, Gao Mengyao, Kong Lijing, Lan Jinshen, Zhao Jingtian, Long Peng, Kang Junyong, Zheng Xuanli, Huang Shengli, Li Shuping
Opt Express. 2022 Feb 28;30(5):6700-6712. doi: 10.1364/OE.449381.
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.
采用时域有限差分法分析了双层Au/BIG和三层Au/BIG/Au磁等离子体晶体(MPC)的磁光(MO)特性。与光滑薄膜的低偏转角和低透射率不同,顶部Au膜中有穿孔的所有异质结构在近红外波长范围内的法拉第旋转和透射率方面都呈现出类似的趋势,有两个强共振带。揭示了相对于组件和孔结构的能带和电分布。发现具有等离子体六角形孔的MPC具有优异的法拉第效应和独特的各向异性。说明了共振带随六角形孔的尺寸和周期、不同层的厚度以及入射光偏振的演变。与连续Au/BIG薄膜相比,优化后的双层和三层六角形MPC在共振波长处的法拉第旋转分别提高了15.3倍和17.5倍,透射率分别提高了12.1倍和11.1倍,表明该系统可能在MO器件中找到潜在应用。