Journal
JOURNAL OF MODERN OPTICS
Volume 56, Issue 4, Pages 554-557Publisher
TAYLOR & FRANCIS LTD
DOI: 10.1080/09500340802621785
Keywords
InSb; metamaterial; metasurface; semiconductor; split-ring resonator; terahertz; thermal tunability
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Funding
- MOE Academic Research Fund of Singapore
- Lee Kuan Yew Fund
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As the variation of temperature alters the intrinsic carrier density in a semiconductor, numerical simulations indicate that the consequent variation of the relative permittivity in the terahertz regime provides a way to realize thermally tunable split-ring resonators. Electromagnetic metasurfaces and metamaterials that are thermally tunable in the terahertz regime can thus be implemented.
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