標題: Stress-Induced 3D Chiral Fractal Metasurface for Enhanced and Stabilized Broadband Near-Field Optical Chirality
作者: Tseng, Ming Lun
Lin, Zhan-Hong
Kuo, Hsin Yu
Huang, Tzu-Ting
Huang, Yi-Teng
Chung, Tsung Lin
Chu, Cheng Hung
Huang, Jer-Shing
Tsai, Din Ping
電子物理學系
Department of Electrophysics
關鍵字: 3D metasurfaces;broadband optical chirality;chiral metasurfaces;fractal antennas;metasurfaces
公開日期: 1-八月-2019
摘要: Metasurfaces comprising 3D chiral structures have shown great potential in chiroptical applications such as chiral optical components and sensing. So far, the main challenges lie in the nanofabrication and the limited operational bandwidth. Homogeneous and localized broadband near-field optical chirality enhancement has not been achieved. Here, an effective nanofabrication method to create a 3D chiral metasurface with far- and near-field broadband chiroptical properties is demonstrated. A focused ion beam is used to cut and stretch nanowires into 3D Archimedean spirals from stacked films. The 3D Archimedean spiral is a self-similar chiral fractal structure sensitive to the chirality of light. The spiral exhibits far- and near-field broadband chiroptical responses from 2 to 8 mu m. With circularly polarized light (CPL), the spiral shows superior far-field transmission dissymmetry and handedness-dependent near-field localization. With linearly polarized excitation, homogeneous and highly enhanced broadband near-field optical chirality is generated at a stably localized position inside the spiral. The effective yet straightforward fabrication strategy allows easy fabrication of 3D chiral structures with superior broadband far-field chiroptical response as well as strongly enhanced and stably localized broadband near-field optical chirality. The reported method and chiral metasurface may find applications in broadband chiral optics and chiral sensing.
URI: http://dx.doi.org/10.1002/adom.201900617
http://hdl.handle.net/11536/152719
ISSN: 2195-1071
DOI: 10.1002/adom.201900617
期刊: ADVANCED OPTICAL MATERIALS
Volume: 7
Issue: 15
起始頁: 0
結束頁: 0
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