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- W106010051 abstract "Mentioned above calculations are made under set of assumptions [1} one of which is that absorber electrode contacts provide Andreev reflection [4] blocking hot electron power flow-out from the absorber-sensor to the bias circuit. What will happen when contacts will be not Andreev ones but ordinary? To answer this question one may take as a basis the expression for thermal capacity of electrons in metals [5] Nk2T C J/K, — • 2 E (0) Abstract — The electron energy balance equation was modified to take into account the effect of transfer of hot electron power from TES bolometer absorber combined with the sensor to the biasing circuit with the electron current. Estimation calculations have shown that the power flow connected with said transfer is negligibly small in comparison with the hot electron power transfer to the thin metal film structure and substrate through electron-phonon interactions for studied earlier molybdenum-copper bi-layer thin film structures in 0.08 — 0.4 K temperature range [1]. The obtained equation was used to estimate a ratio of current decrement to incident radiation power (current sensitivity) of the TES bolometers as well There were no significant reducing changes in the TES bolometers current sensitivity found at fixed bias voltage across the absorber for the studied structures except the case at temperatures 0.3 K and less and, especially, at absorber lengths 1 itt and less when the current sensitivity gain of order of several tens have been calculated. Keywords—Astronomy, millimeterand submillimeter-wave detectors, superconducting devices, transition edge sensor (TES) bolometers. (2)" @default.
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- W106010051 date "2006-05-01" @default.
- W106010051 modified "2023-09-24" @default.
- W106010051 title "To the Sensitivity Estimation of TES Bolometers for SubMNI Radiation Detection Operating at Super Low Temperatures" @default.
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