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- W1991073256 abstract "We have successfully fabricated a superconducting transition edge sensor (TES), bolometer that centers on the use of electron-phonon decoupling (EPD) for thermal isolation. We have selected a design approach that separates the two functions of far-infrared and THz radiative power absorption and temperature measurement, allowing separate optimization of the performance of each element. We have integrated molybdenum/gold (Mo/Au) bilayer TES and ion assisted thermally evaporated (IAE) bismuth (Bi) films as radiation absorber coupled to a low-loss microstripline from niobium (Nb) ground plane to a twin-slot antenna structure. The thermal conductance (G) and the time constant for the different geometry device have been measured. For one such device, the measured G is 1.16×10<sup>-10</sup> W/K (± 0.61×10<sup>- 10</sup> W/K) at 60 mK, which corresponds to noise equivalent power (NEP) = 1.65×10<sup>-18</sup>W/ √Hz and time constant of ~5 μs." @default.
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- W1991073256 date "2010-07-16" @default.
- W1991073256 modified "2023-09-23" @default.
- W1991073256 title "Development of superconducting transition edge sensors based on electron-phonon decoupling" @default.
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- W1991073256 doi "https://doi.org/10.1117/12.856450" @default.
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