Nanogap patterning on NbTi thin-film resonators decreases TC by 1.5 K and raises dfres/dT to 62 MHz/K at 4.2 K, enhancing cryogenic thermometry sensitivity by 10x.
Superconducting microresonators: physics and applications
2 Pith papers cite this work. Polarity classification is still indexing.
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Pith papers citing it
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KIPM consortium status report claims 2.1 eV resolution record and outlines plans to reach sub-eV thresholds via phonon collection modeling and low-Tc materials.
citing papers explorer
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Surface nanostructuring of NbTi superconducting thin-film resonators for enhanced cryogenic thermometry
Nanogap patterning on NbTi thin-film resonators decreases TC by 1.5 K and raises dfres/dT to 62 MHz/K at 4.2 K, enhancing cryogenic thermometry sensitivity by 10x.
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Development Status of the KIPM Detector Consortium
KIPM consortium status report claims 2.1 eV resolution record and outlines plans to reach sub-eV thresholds via phonon collection modeling and low-Tc materials.