We study the stochastic dynamics of a symmetric self-chemotactic particle and determine the long-time behavior of its mean squared displacement (MSD). The attractive or repulsive interaction of the particle with the chemical field that it generates induces a nonlinear, non-Markovian effective dynamics, which results in anomalous diffusion for spatial dimensions d≤2. In one spatial dimension, we map the case of repulsive chemotaxis onto a run-and-tumble-like dynamics, leading to an MSD which, as a function of the elapsed time t, grows superdiffusively with exponent 4/3. In the presence of attractive chemotaxis, instead, the particle exhibits a slowdown, with the MSD growing logarithmically with time. In d=2, we find logarithmic aging of the diffusion coefficient, while in d=3 the motion reverts to standard diffusive behavior with a renormalized diffusion coefficient.

Anomalous Diffusion and Run-and-Tumble Motion of a Chemotactic Particle in Low Dimensions / Romano, Jacopo; Gambassi, Andrea. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 136:10(2026), pp. 1-6. [10.1103/zn4t-gv6y]

Anomalous Diffusion and Run-and-Tumble Motion of a Chemotactic Particle in Low Dimensions

Romano, Jacopo;Gambassi, Andrea
2026-01-01

Abstract

We study the stochastic dynamics of a symmetric self-chemotactic particle and determine the long-time behavior of its mean squared displacement (MSD). The attractive or repulsive interaction of the particle with the chemical field that it generates induces a nonlinear, non-Markovian effective dynamics, which results in anomalous diffusion for spatial dimensions d≤2. In one spatial dimension, we map the case of repulsive chemotaxis onto a run-and-tumble-like dynamics, leading to an MSD which, as a function of the elapsed time t, grows superdiffusively with exponent 4/3. In the presence of attractive chemotaxis, instead, the particle exhibits a slowdown, with the MSD growing logarithmically with time. In d=2, we find logarithmic aging of the diffusion coefficient, while in d=3 the motion reverts to standard diffusive behavior with a renormalized diffusion coefficient.
2026
136
10
1
6
107102
https://journals.aps.org/prl/abstract/10.1103/zn4t-gv6y
Romano, Jacopo; Gambassi, Andrea
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11767/151111
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