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cond-mat.softJun 8, 2017
25
citations (OpenAlex)
authors
  • Katherine Klymko
  • Dibyendu Mandal
  • Kranthi K. Mandadapu
institutions
  • Lawrence Berkeley National Laboratory
  • University of California, Berkeley
arXiv abstractPDF
paper

Statistical mechanics of transport processes in active fluids: Equations of hydrodynamics

arXiv:1706.02694 · doi:10.1063/1.4997091

Abstract

The equations of hydrodynamics including mass, linear momentum, angular momentum, and energy are derived by coarse-graining the microscopic equations of motion for systems consisting of rotary dumbbells driven by internal torques.

25 pages, 3 figures

References in corpus (13)

  • Motility-Induced Phase Separation
  • Statistical Mechanics of Interacting Run-and-Tumble Bacteria
  • Turning bacteria suspensions into a "superfluid"
  • Tuned, driven, and active soft matter
  • Towards a 'Thermodynamics' of Active Matter
  • Transport powered by bacterial turbulence
  • Dynamical mean-field theory and weakly non-linear analysis for the phase separation of active Brownian particles
  • Unusual swelling of a polymer in a bacterial bath
  • Colloidal transport by active filaments
  • Green-Kubo approach to the average swim speed in active Brownian systems
  • Estimation of the critical behavior in an active colloidal system with Vicsek-like interactions
  • Recovery of mechanical pressure in a gas of underdamped active dumbbells with Brownian noise
  • Generalized hydrodynamics of active polar suspensions
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