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Highly efficient UV detection in a metal-semiconductor-metal detector with epigraphene

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arxiv 2203.01878 v1 pith:FVUR4EES submitted 2022-03-03 cond-mat.mes-hall cond-mat.mtrl-sciphysics.ins-det

Highly efficient UV detection in a metal-semiconductor-metal detector with epigraphene

classification cond-mat.mes-hall cond-mat.mtrl-sciphysics.ins-det
keywords epigraphenehighdetectordetectorsdevicesefficiencymaterialmetal-semiconductor-metal
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We show that epitaxial graphene on silicon carbide (epigraphene) grown at high temperatures (T > 1850 {\deg}C) readily acts as material for implementing solar-blind ultraviolet (UV) detectors with outstanding performance. We present centimeter-sized epigraphene metal-semiconductor-metal (MSM) detectors with peak external quantum efficiency of ~ 85% for wavelengths 250-280 nm, corresponding to nearly 100% internal quantum efficiency when accounting for reflection losses. Zero bias operation is possible in asymmetric devices, with the responsivity to UV remaining as high as R = 134 mA/W, making this a self-powered detector. The low dark currents Io ~50 fA translate into an estimated record high specific detectivity D = 3.5 x 10^15 Jones. The performance that we demonstrate, together with material reproducibility, renders epigraphene technologically attractive to implement high-performance planar MSM devices with a low processing effort, including multi-pixel UV sensor arrays, suitable for a number of practical applications.

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