Thermal hysteresis in scattering by VO 2 spheres

Vanadium dioxide ( V O 2 ) transforms from purely monoclinic to purely tetragonal when heated from 58°C to 72°C, and the transformation is reversible but hysteretic. Electromagnetically, V O 2 transforms from a dissipative dielectric to another dissipative dielectric if the free-space wavelength is...

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Veröffentlicht in:Journal of the Optical Society of America. A, Optics, image science, and vision Optics, image science, and vision, 2022-10, Vol.39 (10), p.1921
Hauptverfasser: Lakhtakia, Akhlesh, Mackay, Tom G., Waseer, Waleed I.
Format: Artikel
Sprache:eng
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Zusammenfassung:Vanadium dioxide ( V O 2 ) transforms from purely monoclinic to purely tetragonal when heated from 58°C to 72°C, and the transformation is reversible but hysteretic. Electromagnetically, V O 2 transforms from a dissipative dielectric to another dissipative dielectric if the free-space wavelength is λ 0 < 1100 n m ; it transforms from a dissipative dielectric to a plasmonic metal (or vice versa) if λ 0 > 1100 n m . Calculating the extinction, total scattering, absorption, radiation pressure, backscattering and forward-scattering efficiencies of a V O 2 sphere, we found clear signatures of thermal hysteresis in (i) the forward-scattering, backscattering, and absorption efficiencies for λ 0 < 1100 n m , and (ii) the forward-scattering, backscattering, total scattering, and absorption efficiencies for λ 0 > 1100 n m . Vacuum and null-permittivity quasistates occur between 58°C and 72°C, when tetragonal V O 2 is a plasmonic metal, once each on the heating branch and once each on the cooling branch of thermal hysteresis. But none of the six efficiencies show significant differences between the two quasistates.
ISSN:1084-7529
1520-8532
DOI:10.1364/JOSAA.463159