A new rigid-body constraint method in MPCD simulations of colloidal suspensions delivers correct single-particle statistics and suspension transport properties with nearly an order-of-magnitude speedup over harmonic-bond models and support for arbitrary particle shapes.
Diffusiophoresis in cells: A general nonequilibrium, nonmotor mechanism for the metabolism-dependent transport of particles in cells
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Simulating hydrodynamic interactions in colloidal suspensions using multiparticle collision dynamics with rigid-body constraints
A new rigid-body constraint method in MPCD simulations of colloidal suspensions delivers correct single-particle statistics and suspension transport properties with nearly an order-of-magnitude speedup over harmonic-bond models and support for arbitrary particle shapes.