A four-step doping pattern in YBCO films is predicted to give transition-edge bolometers a 12.7 K operating window, a 14x larger saturation power, and a TCR of 5.13 per kelvin, all improvements over nonstructured YBCO.
Investigation of Bias Current and Modulation Frequency Dependences of Detectivity of YBCO TES and the Effects of Coating of Cu-C Composite Absorver Layer
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Calculations of some doping nanostructurations and patterns improving the functionality of high-temperature superconductors for bolometer device applications
A four-step doping pattern in YBCO films is predicted to give transition-edge bolometers a 12.7 K operating window, a 14x larger saturation power, and a TCR of 5.13 per kelvin, all improvements over nonstructured YBCO.