Calorimetry of a Quantum Phase Slip
<p>Dataset:</p> <ol> <li>FIG2.B : Spectrum measurement at cryostat temperatures 50 mK and 400 mK</li> <li>FIG2.C : Calibration curve - Output Power vs. Temperature at zero voltage bias for two phase drops</li> <li>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)</li> <li>FIG2. E : Temperature dependence of the screening parameter β</li> <li>FIG3. A : Time-resolved electron temperature in the absorber, at different starting temperatures set by the cryostat bath</li> <li>FIG3. B : Return to equilibrium ∆T (t) at 100 mK, following a flux pulse.</li> <li>FIG3. C : Magnitude of the initial temperature rise ∆T_0 at t = 0 and the fit</li> </ol>
ShareScore
28/100
Overall dataset sharing score
Score breakdown
These five areas show where the dataset supports — or may limit — practical reuse.
- Stewardship
- 8
- Harmonization
- 4
- Access
- 16
- Reuse readiness
- 0
- Engagement
- 0