Bulletin of the American Physical Society
APS March Meeting 2020
Volume 65, Number 1
Monday–Friday, March 2–6, 2020; Denver, Colorado
Session G24: Noise-Driven Dynamics in Far-From-Equilibrium Systems II
11:15 AM–2:03 PM,
Tuesday, March 3, 2020
Room: 401
Sponsoring
Units:
GSNP DBIO
Chair: Jeffrey Weiss, University of Colorado, Boulder
Abstract: G24.00001 : Minimal Model for Intermittent Dynamics and "Turbulence" in Many-Body Systems*
Presenter:
Guram Gogia
(Emory University)
Authors:
Guram Gogia
(Emory University)
Wentao Yu
(Emory University)
Justin Burton
(Emory University)
Complex systems are known to exhibit emergent properties that are missing on the constituent level. One particular property shared by many seemingly unrelated complex systems is intermittent switching between distinct dynamical states. Inspired by our previous experimental findings [1], here we present computational results for a particle-based system that exhibits intermittent switching between two distinct phases. The emergent dynamics are a direct consequence of coupling between structural disorder arising from particle polydispersity, inertial dynamics, and external forcing. Modelling the orthogonal mechanical energies of the system using ODEs with both noise and coupling terms based on kinetic arguments surprisingly results into predator-prey-like interactions. Such equations have recently been employed to describe intermittent turbulence in a pipe flow [2]. The only non-dimensional number derived from our equations resembles the Reynolds number in fluid flow and accurately predicts where intermittent dynamics are manifested.
1. G.Gogia, and J. C. Burton. PRL,119.17 (2017):178004
2. H-Y. Shih, T-L. Hsieh, and N.Goldenfeld. Nat.Phys. 12.3 (2016):245
*NSF, DMR-1455086
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