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’Maxwell-Boltzmann’ velocity distribution for noninteracting active matter

ORAL

Abstract

We theoretically and computationally find a Maxwell-Boltzmann-like velocity distribution for noninteracting active matter (NAM). To achieve this, mass and moment of inertia are incorporated into the corresponding noninteracting active Fokker-Planck equation, thus solving for the first time, the underdamped scenario of NAM following a Fokker-Planck formalism. This time, the distribution results in a bimodal symmetric expression that contains the effect of inertia on transport properties of NAM. The analytical distribution is further compared to experiments dealing with vibrobots. This work is an important step toward characterising active matter using an equivalent non-equilibrium statistical mechanics.

Presenters

  • Mario Sandoval

    Physics, Universidad Autonoma Metropolitana

Authors

  • Mario Sandoval

    Physics, Universidad Autonoma Metropolitana