期刊
PHYSICAL REVIEW B
卷 88, 期 20, 页码 -出版社
AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.88.205106
关键词
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资金
- Ministry of Education and Science of the Russian Federation [11.G34.31.0020, 14.B37.21.0307, 14.B37.21.1964, 01201259765]
- Government of St. Petersburg
- Dynasty Foundation (Russia)
- Russian Foundation for Basic Research [11-02-00865, 13-02-00186]
- Australian Research Council
- Scholarship of President of Russian Federation for young scientists and graduate students
The concepts of many optical devices are based on fundamental physical phenomena such as resonances. One of the commonly used devices is an electromagnetic antenna that converts localized energy into freely propagating radiation and vise versa, offering unique capabilities for controlling electromagnetic radiation. Here we propose a concept for controlling the intensity and directionality of electromagnetic wave scattering in radio-frequency and optical antennas based on the physics of Fano resonances. We develop an analytical theory of spatial Fano resonances in antennas that describes switching of the radiation pattern between the forward and backward directions, and we confirm our theory with both numerical calculations and microwave experiments. Our approach bridges the concepts of conventional radio antennas and photonic nanoantennas, and it provides a paradigm for the design of wireless optical devices with various functionalities and architectures.
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