Published March 28, 2022 | Version v1
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Calorimetry of a Quantum Phase Slip

  • 1. Institut Néel CNRS
  • 2. Univ. Grenoble Alpes, CNRS, Grenoble INP, Institut Neel
  • 3. Universität Konstanz, Fachbereich Physik
  • 4. Aalto University
  • 5. Aalto University School of Science
  • 6. University of Konstanz
  • 7. Univ. Grenoble Alpes, CNRS, Grenoble INP

Description

Dataset:

  1. FIG2.B : Spectrum measurement at cryostat temperatures 50 mK and 400 mK
  2. FIG2.C : Calibration curve - Output Power vs. Temperature at zero voltage bias for two phase drops
  3. FIG2.D : Resonator response at zero voltage bias as a function of increasing applied magnetic flux, at three cryostat temperatures (50 mK, 200 mK, 400 mK)
  4. FIG2. E : Temperature dependence of the screening parameter β
  5. FIG3. A : Time-resolved electron temperature in the absorber, at different starting temperatures set by the cryostat bath
  6. FIG3. B : Return to equilibrium ∆T (t) at 100 mK, following a flux pulse.
  7. FIG3. C : Magnitude of the initial temperature rise ∆T_0 at t = 0 and the fit

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