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Simulating the kinematics of completely faceted surfaces

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Publication:440592
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DOI10.1016/j.jcp.2012.02.030zbMath1245.82004arXiv0910.2207OpenAlexW2016323695MaRDI QIDQ440592

Scott A. Norris, Stephen J. Watson

Publication date: 19 August 2012

Published in: Journal of Computational Physics (Search for Journal in Brave)

Full work available at URL: https://arxiv.org/abs/0910.2207


zbMATH Keywords

surface evolutionfacetinginterface-tracking


Mathematics Subject Classification ID

Lua error in Module:PublicationMSCList at line 37: attempt to index local 'msc_result' (a nil value).


Related Items (1)

Adaptive localized replay: an efficient integration scheme for accurate simulation of coarsening dynamical systems



Cites Work

  • Unnamed Item
  • Modeling crystal growth in a diffusion field using fully faceted interfaces
  • Diffuse interfaces with sharp corners and facets: Phase field models with strongly anisotropic surfaces
  • A geometric model for coarsening during spiral-mode growth of thin films
  • Coarsening dynamics of the convective Cahn-Hilliard equation
  • A Level-Set Method for the Evolution of Faceted Crystals
  • A phase-field model for highly anisotropic interfacial energy


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