Tunable Multiple Surface Plasmonic Bending Beams into Single One by Changing Incident Light Wavelength
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Published:2023-06-30
Issue:7
Volume:10
Page:758
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ISSN:2304-6732
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Container-title:Photonics
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language:en
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Short-container-title:Photonics
Author:
Zhang Hang1,
Wang Liang1,
Li Xueli1,
Li Xiaoming1,
Li Hui12
Affiliation:
1. School of Physical Science and Technology, Kunming University, Kunming 650214, China
2. Key Laboratory of Artificial Microstructures in Yunnan Higher Education Institutions, Kunming University, Kunming 650214, China
Abstract
Controllable surface plasmonic bending beams (SPBs) with propagating along bending curves have a wide range of applications in the fields of fiber sensors, optical trapping, and micro-nano manipulations. In terms of designing and optimizing controllable SPB generators, there is great significance in realizing conversion between multiple SPBs and single SPB without rebuilding metasurface structures. In this study, a SPB generator, composed of an X-shaped nanohole array, is proposed to realize conversion between multiple SPBs and a single one by changing the incident light wavelength. The Fabry–Pérot (F–P) resonance effect of SPPs in nanoholes and localized surface plasmonic (LSP) resonance of the nanohole are utilized to explain this conversion. It turns out that the relationship between the electric field intensities of SPBs and the polarization angle of incident light satisfies the sine distribution, which is consistent with dipole radiation theory. In addition, we also find that the electric field intensities of SPBs rely on the width, length, and angle of the X-shaped nanohole. These findings could help in designing and optimizing controllable and multi-functions SPBs converters.
Funder
Yunnan Local Colleges Applied Basic Research Projects
Science Foundation of Yunnan Provincial Education Department
Talents Introduction Project of Kunming University
Frontier Research Team of Kunming University 2023
Subject
Radiology, Nuclear Medicine and imaging,Instrumentation,Atomic and Molecular Physics, and Optics
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