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Mid-infrared chiral metasurface absorbers with split-ellipse structures

  • Xiangkai Zeng
  • , Daniel Rosenmann
  • , David A. Czaplewski
  • , Jie Gao
  • , Xiaodong Yang
  • Missouri University of Science and Technology
  • Argonne National Laboratory

Research output: Contribution to journalArticlepeer-review

39 Scopus citations

Abstract

Natural chiral materials usually have very weak circular dichroism (CD) responses. Here, we design and demonstrate one type of mid-infrared chiral metasurface absorber with strong chiroptical effects, which can achieve high CD in absorption above 0.57 over the wavelength range of 5 to 5.9μm. The maximum absorption of the chiral metasurface absorber under circularly polarized light can reach 0.90 and the maximum CD in absorption is 0.63. Meanwhile, the chiral resonance wavelength and the CD value can be tuned by varying the geometric parameters of the metasurface. A thermal analysis of the metasurface absorber further shows the strong connection between CD in absorption and temperature difference. The demonstrated chiral metasurface absorbers can be used in many promising applications such as molecular sensing, thermophotovoltaics and chiral spectroscopy.

Original languageEnglish
Article number128854
JournalOptics Communications
Volume525
DOIs
StatePublished - Dec 15 2022

Keywords

  • Chiral metasurface
  • Chiroptical effect
  • Circular dichroism
  • Thermal analysis

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