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- W1567643763 startingPage "7339" @default.
- W1567643763 abstract "Magnetization curves have been measured as a function of temperature for a polycrystalline sample of ${mathrm{Ba}}_{0.6}$${mathrm{K}}_{0.4}$${mathrm{BiO}}_{3}$. These measurements reveal significant reversibility at modest fields for all temperatures studied. The irreversibility line (${H}^{mathrm{*}}$,${T}^{mathrm{*}}$) is determined for this material and shows that ${H}^{mathrm{*}}$ is less than 0.8 T at all temperatures. The logarithmic magnetic relaxation rate A=dM/d ln(t) has been studied for this material, as a function of both field and temperature. Analysis using the flux-creep model reveals the average pinning energy ${U}_{0}$ to be 0.08ifmmodepmelsetextpmfi{}0.02 eV. This extremely small pinning energy is used to explain the small critical current, its strong dependence on field, and the significantly reversible behavior in this material." @default.
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- W1567643763 date "1989-04-01" @default.
- W1567643763 modified "2023-09-23" @default.
- W1567643763 title "Flux creep in a polycrystallineBa0.6K0.4BiO3superconductor" @default.
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- W1567643763 doi "https://doi.org/10.1103/physrevb.39.7339" @default.
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