期刊
OPTICS LETTERS
卷 37, 期 16, 页码 3402-3404出版社
OPTICAL SOC AMER
DOI: 10.1364/OL.37.003402
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资金
- German Research Foundation [SPP 1391]
- German Federal Ministry of Education and Research (PhoNa)
- Thuringian Ministry of Education Science and Culture (MeMa)
- Australian Research Council
- Go-8 Australia-Germany (Go8-DAAD) Joint Research Cooperation Scheme
- Australian National Computational Infrastructure
We predict and demonstrate the generation of a plasmonic hot spot on the surface of a metal film by the interference of two Airy surface plasmons. We show that the position of the hot spot can be controlled by the distance between the excitation gratings as well as by the phase front of the initial excitation. The observed effect constitutes a planar analogy to Airy beam autofocusing and offers new opportunities for spatially resolved surface plasmon sensing and optical surface tweezers. (c) 2012 Optical Society of America
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