Literature DB >> 16468857

Local stress and heat flux in atomistic systems involving three-body forces.

Youping Chen1.   

Abstract

Local densities of fundamental physical quantities, including stress and heat flux fields, are formulated for atomistic systems involving three-body forces. The obtained formulas are calculable within an atomistic simulation, in consistent with the conservation equations of thermodynamics of continuum, and can be applied to systems with general two- and three-body interaction forces. It is hoped that this work may correct some misuse of inappropriate formulas of stress and heat flux in the literature, may clarify the definition of site energy of many-body potentials, and may serve as an analytical link between an atomistic model and a continuum theory. Physical meanings of the obtained formulas, their relation with virial theorem and heat theorem, and the applicability are discussed.

Year:  2006        PMID: 16468857     DOI: 10.1063/1.2166387

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  4 in total

1.  Concurrent atomistic and continuum simulation of bi-crystal strontium titanate with tilt grain boundary.

Authors:  Shengfeng Yang; Youping Chen
Journal:  Proc Math Phys Eng Sci       Date:  2015-03-08       Impact factor: 2.704

2.  On the equivalence of the two foundational formulations for atomistic flux in inhomogeneous transport processes.

Authors:  Adrian Diaz; Denis Davydov; Youping Chen
Journal:  Proc Math Phys Eng Sci       Date:  2019-03-20       Impact factor: 2.704

3.  Asymmetry of the atomic-level stress tensor in homogeneous and inhomogeneous materials.

Authors:  Ji Rigelesaiyin; Adrian Diaz; Weixuan Li; Liming Xiong; Youping Chen
Journal:  Proc Math Phys Eng Sci       Date:  2018-09-05       Impact factor: 2.704

4.  Calculation and visualization of atomistic mechanical stresses in nanomaterials and biomolecules.

Authors:  Andrew T Fenley; Hari S Muddana; Michael K Gilson
Journal:  PLoS One       Date:  2014-12-11       Impact factor: 3.240

  4 in total

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