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Title

Dielectric tetrahedrons as terahertz resonators switched from perfect absorber to reflector.

Authors

Chen, Haosheng; Zhou, Chenchen; Li, Yongjian; Liang, Shuaishuai; Li, Jiang

Abstract

Tetrahedrons are basic building blocks in natural and artificial materials, while the terahertz response of micro tetrahedrons has been little explored. Here we fabricate subwavelength ceramic tetrahedrons for use in the terahertz frequency range, and find that the three-dimensional geometry significantly affects their terahertz properties. The transmission spectra are independent of the orientation of the tetrahedrons, while the first magnetic resonance disappears in the reflection spectra when an upright tetrahedron is flipped upside down on the metallic substrate, which changes it from a perfect absorber to a perfect reflector. This is attributed to the destructive interference between two magnetic dipoles induced respectively by the incident and the reflected wave. The study brings new insights in the materials design with 3D building blocks to realize more interesting and exotic terahertz properties.

Subjects

TETRAHEDRA; TERAHERTZ materials; MAGNETIC dipoles; BLOCKS (Building materials); TERAHERTZ technology

Publication

Scientific Reports, 2020, Vol 10, Issue 1, pN.PAG

ISSN

2045-2322

Publication type

Academic Journal

DOI

10.1038/s41598-020-74252-0

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