Localization and ballistic diffusion for the tempered fractional Brownian-Langevin motion

Abstract

This paper further discusses the tempered fractional Brownian motion, its ergodicity, and the derivation of the corresponding Fokker-Planck equation. Then we introduce the generalized Langevin equation with the tempered fractional Gaussian noise for a free particle, called tempered fractional Langevin equation (tfLe). While the tempered fractional Brownian motion displays localization diffusion for the long time limit and for the short time its mean squared displacement has the asymptotic form t2H, we show that the asymptotic form of the mean squared displacement of the tfLe transits from t2 (ballistic diffusion for short time) to t2-2H, and then to t2 (again ballistic diffusion for long time). On the other hand, the overdamped tfLe has the transition of the diffusion type from t2-2H to t2 (ballistic diffusion). The tfLe with harmonic potential is also considered.

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