arXiv · cond-mat/0001131
Magnetic relaxation in hard type-II superconductors
Abstract
Magnetic relaxation in a type-II superconductor is simulated for a range of temperatures (T) in a simple model of 2D Josephson junction array (JJA) with finite screening. The high-T phase, that is characterised by a single time scale τ_α, crosses over to an intermediate phase at a lower temperature T_{cr} wherein a second time scale τ_β<<τ_α emerges. The relaxation in the time window set by τ_β follows power law which is attributed to self-organization of the magnetic flux during relaxation. Consequently, for T J_{c}) to sub-critical (J<J_{c}) state separated by an intermediate state with frozen dynamics is observed. Both τ_α and τ_β diverges at T_{sc}<T_{cr}, marking the transition into a state with true persistent current.
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Mahesh Chandran. 2000-01-11. Magnetic relaxation in hard type-II superconductors. https://doi.org/10.1209/epl%2Fi2000-00176-1
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