Thermal rounding of the depinning transition
S. Bustingorry, A. B. Kolton, T. Giamarchi

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Abstract
We study thermal effects at the depinning transition by numerical simulations of driven one-dimensional elastic interfaces in a disordered medium. We find that the velocity of the interface, evaluated at the critical depinning force, can be correctly described with the power law , where is the thermal exponent. Using the sample-dependent value of the critical force, we precisely evaluate the value of directly from the temperature dependence of the velocity, obtaining the value . By measuring the structure factor of the interface we show that both the thermally-rounded and the T=0 depinning, display the same large-scale geometry, described by an identical divergence of a characteristic length with the velocity , where and are respectively the T=0 correlation and depinning exponents. We discuss the…
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