First passage dynamics of stochastic motion in heterogeneous media driven by correlated white Gaussian and coloured non-Gaussian noises

Nicholas Mwilu Mutothya, Yong Xu, Yongge Li, Ralf Metzler, Nicholas Muthama Mutua

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10 Scopus citations

Abstract

We study the first passage dynamics for a diffusing particle experiencing a spatially varying diffusion coefficient while driven by correlated additive Gaussian white noise and multiplicative coloured non-Gaussian noise. We consider three functional forms for position dependence of the diffusion coefficient: power-law, exponential, and logarithmic. The coloured non-Gaussian noise is distributed according to Tsallis’ q-distribution. Tracks of the non-Markovian systems are numerically simulated by using the fourth-order Runge–Kutta algorithm and the first passage times (FPTs) are recorded. The FPT density is determined along with the mean FPT (MFPT). Effects of the noise intensity and self-correlation of the multiplicative noise, the intensity of the additive noise, the cross-correlation strength, and the non-extensivity parameter on the MFPT are discussed.

Original languageEnglish
Article number045012
JournalJournal of Physics: Complexity
Volume2
Issue number4
DOIs
StatePublished - Dec 2021

Keywords

  • Correlated noise
  • Diffusion
  • First passage
  • Non-gaussian

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