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Normal-metal hot-electron bolometer with Andreev reflection from superconductor boundaries

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Abstract

This paper describes the design and experimental testing of a high-sensitivity hot-electron bolometer based a film of normal metal, exploiting the Andreev reflection from superconductor boundaries, and cooled with the help of a superconductor-insulator-normal metal junction. At the measured thermal conductivity, G≈6×10−12 W/K, and a time constant of τ=0.2 μs, and a temperature of 300 mK, the estimated noise-equivalent power NEP=5×10−18 W/Hz1/2, assuming that temperature fluctuations are the major source of noise. At a temperature of 100 mK, the thermal conductivity drops to G≈7×10−14 W/K, which yields NEP=2×10−19 W/Hz1/2 at a time constant of τ=5 μs. The microbolometer has been designed to serve as a detector of millimeter and FIR waves in space-based radio telescopes.

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Zh. Éksp. Teor. Fiz. 115, 1085–1092 (March 1999)

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Vystavkin, A.N., Shuvaev, D.V., Kuz’min, L.S. et al. Normal-metal hot-electron bolometer with Andreev reflection from superconductor boundaries. J. Exp. Theor. Phys. 88, 598–602 (1999). https://doi.org/10.1134/1.558834

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  • DOI: https://doi.org/10.1134/1.558834

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