We study the behavior of skyrmions in thin films under the action of stochastic torques arising from thermal
fluctuations. We find that the Brownian motion of skyrmions is described by a stochastic Thiele’s equation and
its corresponding Fokker-Planck equation. The resulting Fokker-Planck equation is recognized as the one for a
high-friction Brownian particle which has been studied extensively in different physical contexts. It is shown
that thermal fluctuations favor the skyrmion motion allowing a finite mobility even in presence of pinning traps.
We calculate explicitly the mobility tensor of skyrmions in linear response to an electric current finding that it
increases with temperature.
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The authors acknowledge funding from Proyecto Fondecyt
No. 11070008 and No. 1110271, Proyecto Basal FB0807-
CEDENNA, and Anillo de Ciencia y Tecnonolog´ıa ACT 1117,
and by N´ucleo Cient´ıfico Milenio P06022-F.