Photonic-doped epsilon-near-zero media for coherent perfect absorption

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作者
Wenjie Ji
Dunjian Wang
Sucheng Li
Yuanfang Shang
Wei Xiong
Lei Zhang
Jie Luo
机构
[1] Soochow University,School of Physical Science and Technology
[2] Shenzhen Kuang-Chi Institute of Advanced Technology,undefined
[3] Shenzhen Kuang-Chi Cutting-edge Technology Co.,undefined
[4] Ltd,undefined
[5] State Key Laboratory of Meta-RF Electromagnetic Modulation Technology,undefined
来源
Applied Physics A | 2019年 / 125卷
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摘要
Coherent perfect absorption increases light absorption to 100% via appropriate interference of waves and provides attractive opportunities for flexible control of light absorption. In this work, we demonstrate that the coherent perfect absorption can be realized using photonic doping of epsilon-near-zero media with both lossless and lossy defects. Based on photonic doping theory, the epsilon-near-zero medium with defects can be homogenized as an effective medium. We find that the lossless defects can tune the effective permeability to be zero, and the lossy defects can further tune the effective permeability to be a pure imaginary value to realize the coherent perfect absorption. Moreover, we show that the doping scheme enables many ways to control absorption, such as multiple channels and multiple doping defects, etc. Our work reveals a unique approach for advanced coherent perfect absorption with flexible control functionalities.
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