Affiliation:
1. Jiangnan University
2. Southeast University
3. University of Science and Technology of China
Abstract
Superoscillation is a kind of phenomenon which can generate oscillation faster than the fastest component of a band-limited function. For optics, superoscillation is generated by coherence of low spatial frequency waves. It can bring a localized region named “hot spot”, which has a smaller size than the diffraction-limit, and this character has potential applicaions in super-resolution imaging. Using a high-order radially polarized Laguerre-Gaussian beam tightly focused by high-NA objective lens, we can easily obtain and control the superoscillation hot spot. Using a metasurface, which has compact volume and sub-wavelength pixel size, we can generate the high-order radially polarized Laguerre-Gaussian beam more simply than conventional methods like using a liquid crystal mode converter. We first analyze the properties of unit cells of the metasurface and simulate the performance of the metasurface. Then we analyze the property of the tightly focused high-order radially polarized Laguerre-Gaussian beam and design a super-resolution imaging system using our designed metasurface. Therefore, the 2-fold lateral resolution enhancement is realized in our approach. This method can be used to improve lateral resolution in conventional confocal imaging systems.
Funder
Undergraduate Research and Innovation Projects of China
Open Foundation for CAS Key Laboratory of Quantum Information
State Key Laboratory of Millimeter Waves
Intergovernmental Science and Technology Regular Meeting Exchange Project of Ministry of Science and Technology of China
National Natural Science Foundation of China
Subject
Atomic and Molecular Physics, and Optics
Cited by
20 articles.
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