activity
19992005
most citedFast and Accurate Coarsening Simulation with an Unconditionally Stable Time Step

136 citations · 164 across the 3 of their papers we have counts for

collaborators

5 papers

cond-mat.mtrl-sci200520 cited

Maximally-fast coarsening algorithms

Mowei Cheng, Andrew Rutenberg

We present maximally-fast numerical algorithms for conserved coarsening systems that are stable and accurate with a growing natural time-step . For non-conserved sy…

cond-mat.soft20058 cited

Scaling state of dry two-dimensional froths: universal angle deviations and structure

Andrew D. Rutenberg, Micah B. McCurdy

We characterize the late-time scaling state of dry, coarsening, two-dimensional froths using a detailed, force-based vertex model. We find that the slow evolution of bubbles leads…

cond-mat.stat-mech2003136 cited

Fast and Accurate Coarsening Simulation with an Unconditionally Stable Time Step

Benjamin P. Vollmayr-Lee, Andrew D. Rutenberg

We present Cahn-Hilliard and Allen-Cahn numerical integration algorithms that are unconditionally stable and so provide significantly faster accuracy-controlled simulation. Our sta…

cond-mat.stat-mech1999

Cluster Persistence: a Discriminating Probe of Soap Froth Dynamics

W. Y. Tam, A. D. Rutenberg, B. P. Vollmayr-Lee +1

The persistent decay of bubble clusters in coarsening two-dimensional soap froths is measured experimentally as a function of cluster volume fraction. Dramatically stronger decay i…

cond-mat.stat-mech1999

Anisotropic Coarsening: Grain Shapes and Nonuniversal Persistence

Andrew D. Rutenberg, Benjamin P. Vollmayr-Lee

We solve a coarsening system with small but arbitrary anisotropic surface tension and interface mobility. The resulting size-dependent growth shapes are significantly different fro…