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- W2014958319 abstract "Critical-current measurements in conventional hard type-II superconductors are usually analysed in terms of a function Fp(b) where Fp = Bjc is the volume pinning force and b = B/Bc2 the reduced magnetic field. In many cases a scaling law having the form Fp = Fp0(T)bp(1 - b)q is found. The exponents p and q provide information on the relevant pinning mechanism. In this contribution the influence of thermally activated flux motion on the measured volume pinning force is investigated. At high temperatures Fp is determined not only by the depinning critical current in the absence of thermal activation, jc0(B, T), but also by the activation energy U(j, B, T). Therefore the usual scaling laws must be modified. Approximate scaling functions are derived in the framework of the flux creep model, if several conditions are fulfilled. Thermally assisted flux flow (TAFF) results in a tail at the high field end of the Fp(b∗) curve. Similar behaviour is expected in the vortex glass and collected creep theories. Alternative interpretations of pinning force curves in HTS are discussed." @default.
- W2014958319 created "2016-06-24" @default.
- W2014958319 creator A5000080383 @default.
- W2014958319 date "1992-01-01" @default.
- W2014958319 modified "2023-09-23" @default.
- W2014958319 title "Scaling laws for the volume pinning force in high-temperature superconductors" @default.
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- W2014958319 doi "https://doi.org/10.1016/0011-2275(92)90010-8" @default.
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