Exact solution for anisotropic mobility in trapped self-propelled particles yields non-monotonic negative excess kurtosis and a strictly sub-Gaussian steady-state distribution that displaces the particle into high-potential regions.
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Magnetic field on 3D active Brownian particles produces long-time drift plus enhanced diffusion, non-Gaussian statistics at intermediate times, and field-sensitive first-passage behavior.
citing papers explorer
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Mobility Anisotropy Reshapes Self-Propelled Motion
Exact solution for anisotropic mobility in trapped self-propelled particles yields non-monotonic negative excess kurtosis and a strictly sub-Gaussian steady-state distribution that displaces the particle into high-potential regions.
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Drift-diffusion interplay in active Brownian particles under orienting field
Magnetic field on 3D active Brownian particles produces long-time drift plus enhanced diffusion, non-Gaussian statistics at intermediate times, and field-sensitive first-passage behavior.