Numerical trajectory simulations and Fokker-Planck solutions show cusp-like steady-state velocity distributions and Deff ~ r^{-2} diffusion for large resetting rates independent of drag form, with mean first-passage time minimized by an optimal resetting rate only in shear-thickening media.
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Velocity Resetting of Inertial Run-and-Tumble Particles in Non-Newtonian Media: Velocity Distribution, Diffusion and First-Passage Time
Numerical trajectory simulations and Fokker-Planck solutions show cusp-like steady-state velocity distributions and Deff ~ r^{-2} diffusion for large resetting rates independent of drag form, with mean first-passage time minimized by an optimal resetting rate only in shear-thickening media.