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Large-area, lithography-free, narrow-band and highly directional thermal emitter

  • Xingxing Liu
  • , Zhiwei Li
  • , Zhengji Wen
  • , Mingfei Wu
  • , Jialiang Lu
  • , Xu Chen
  • , Xinchao Zhao
  • , Tao Wang
  • , Ruonan Ji
  • , Yafeng Zhang
  • , Liaoxin Sun
  • , Bo Zhang
  • , Hao Xu
  • , Jing Zhou
  • , Jiaming Hao*
  • , Shaowei Wang
  • , Xiaoshuang Chen
  • , Ning Dai
  • , Wei Lu
  • , Xuechu Shen
  • *此作品的通讯作者
  • CAS - Shanghai Institute of Technical Physics
  • Shanghai Engineering Research Center of Energy-Saving Coatings
  • University of Chinese Academy of Sciences
  • Agency for Science, Technology and Research, Singapore

科研成果: 期刊稿件文章同行评审

摘要

Thermal radiation with narrow bandwidth and well-defined emission directions is highly sought after for a variety of applications, ranging from infrared sensing and thermal imaging to thermophotovoltaics. Here, a large-area (4-inch-diameter) long-wavelength infrared thermal emitter is presented, which is spectrally selective, highly directional, and easily fabricated. The basic structure of the proposed thermal emitter is composed of a truncated one-dimensional photonic crystal and a continuous metallic film separated by a dielectric spacer. Experimental results show that the emitter exhibits a narrowband thermal emittance peak of 92% in the normal direction at the wavenumber of 943.4 cm-1 with a bandwidth of 12.5 cm-1 and a narrow angular emission lobe with a limited solid angle of 0.325 sr (0.115 sr) for s (p) polarization. Numerical simulation analyses are performed to corroborate the experimental observations. Temporal coupled-mode theory combined with transfer matrix method is employed to analytically investigate the emission properties of the structure, which not only can be used to understand the experimental results, but also plays a certain guidance role in designing a thermal emitter with the desired properties. The present thermal emitter can be implemented for thermal photonics management, allowing applications in thermal imaging and medical systems, etc.

源语言英语
页(从-至)19742-19750
页数9
期刊Nanoscale
11
42
DOI
出版状态已出版 - 14 11月 2019
已对外发布

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