Thermal Rounding of the Charge Density Wave Depinning Transition
Preprint
- 20 May 1992
Abstract
The rounding of the charge density wave depinning transition by thermal noise is examined. Hops by localized modes over small barriers trigger ``avalanches'', resulting in a creep velocity much larger than that expected from comparing thermal energies with typical barriers. For a field equal to the $T=0$ depinning field, the creep velocity is predicted to have a {\em power-law} dependence on the temperature $T$; numerical computations confirm this result. The predicted order of magnitude of the thermal rounding of the depinning transition is consistent with rounding seen in experiment.
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All Related Versions
- Version 1, 1992-05-20, ArXiv
- Published version: Physical Review B, 45 (16), 9465.
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