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      An Optimization-Based Atomistic-to-Continuum Coupling Method

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          Abstract

          We present a new optimization-based method for atomistic-to-continuum (AtC) coupling. The main idea is to cast the coupling of the atomistic and continuum models as a constrained optimization problem with virtual Dirichlet controls on the interfaces between the atomistic and continuum subdomains. The optimization objective is to minimize the error between the atomistic and continuum solutions on the overlap between the two subdomains, while the atomistic and continuum force balance equations provide the constraints. Splitting of the atomistic and continuum problems instead of blending them and their subsequent use as constraints in the optimization problem distinguishes our approach from the existing AtC formulations. We present and analyze the method in the context of a one-dimensional chain of atoms modeled using a linearized two-body next-nearest neighbor interactions.

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          Author and article information

          Journal
          2013-04-17
          Article
          1304.4976
          19fd9ef6-c49e-430a-9b62-17e09c6d33d0

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          65-02
          19 pages, 2 figures
          math.NA

          Numerical & Computational mathematics
          Numerical & Computational mathematics

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