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- W4212771505 abstract "We have numerically studied the transmission spectra of dielectric-superconductor photonic crystals for temperature sensing and tunable filtering applications in the visible and near-infrared spectral ranges. The 1D structure studied is a multilayer system composed of two dielectrics, TiO2 (H1 and H2) and SiO2 (L), and a superconductor, YBa2Cu3O7 (S), arranged in two repeated mirrored quaternary sequences: (H1SH2L)5 (LH2SH1)5. The optical spectra show that both the band gap and the defect mode shift to higher wavelengths with increasing the temperature at an average rate of 0.285nm/K over the range from 10 to 80K. This temperature sensitivity can be enhanced to a value of 0.83nm/K by simply scaling the structure thicknesses by 60%. Over a range from 60 to 80K, it can be as high as2.12nm/K. This structure can be used for temperature sensing in the visible and near infrared ranges, from 450nm to 980nm, with high quality factor up to 5×104 , thereby providing high resolution sensing for cryogenic processing and space applications." @default.
- W4212771505 created "2022-02-24" @default.
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- W4212771505 date "2022-06-01" @default.
- W4212771505 modified "2023-09-30" @default.
- W4212771505 title "Superconductor-based quaternary photonic crystals for high sensitivity temperature sensing" @default.
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- W4212771505 doi "https://doi.org/10.1016/j.cjph.2022.02.007" @default.
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