An elastoplastic theory of dislocations as a physical field theory with torsion
arXiv:cond-mat/0105270 · doi:10.1088/0305-4470/35/8/313
Abstract
We consider a static theory of dislocations with moment stress in an anisotropic or isotropic elastoplastical material as a T(3)-gauge theory. We obtain Yang-Mills type field equations which express the force and the moment equilibrium. Additionally, we discuss several constitutive laws between the dislocation density and the moment stress. For a straight screw dislocation, we find the stress field which is modified near the dislocation core due to the appearance of moment stress. For the first time, we calculate the localized moment stress, the Nye tensor, the elastoplastic energy and the modified Peach-Koehler force of a screw dislocation in this framework. Moreover, we discuss the straightforward analogy between a screw dislocation and a magnetic vortex. The dislocation theory in solids is also considered as a three-dimensional effective theory of gravity.
38 pages, 6 figures, RevTex
References in corpus (1)
Cited by in corpus (29)
- A unifying perspective: the relaxed linear micromorphic continuum
- Geometric Theory of Defects
- Torsional chiral magnetic effect in Weyl semimetal with topological defect
- Exact vacuum solution of a (1+2)-dimensional Poincare gauge theory: BTZ solution with torsion
- Parallel Transport of Electrons in Graphene Parallels Gravity
- A nonsingular solution of the edge dislocation in the gauge theory of dislocations
- Cartan's spiral staircase in physics and, in particular, in the gauge theory of dislocations
- Non-singular dislocation continuum theories: Strain gradient elasticity versus Peierls-Nabarro model
- The gauge theory of dislocations: static solutions of screw and edge dislocations
- Korn inequalities for incompatible tensor fields in three space dimensions with conformally invariant dislocation energy
- Continuum mechanics with torsion
- The gauge theory of dislocations: conservation and balance laws
- Irreducible decomposition of strain gradient tensor in isotropic strain gradient elasticity
- On the fundamentals of the three-dimensional translation gauge theory of dislocations
- Torsional Monopoles and Torqued Geometries in Gravity and Condensed Matter
- Geometric treatment of conduction electron scattering by crystal lattice strains and dislocations
- Wedge disclination in the field theory of elastoplasticity
- A canonical rate-independent model of geometrically linear isotropic gradient plasticity with isotropic hardening and plastic spin accounting for the Burgers vector
- The Einsteinian T(3)-Gauge Approach and the Stress Tensor of the Screw Dislocation in the Second Order: Avoiding the Cut-off at the Core
- On the Higgs mechanism and stress functions in the translational gauge theory of dislocations
- Korn-Maxwell-Sobolev inequalities for general incompatibilities
- Twist disclination in the field theory of elastoplasticity
- Is spacetime curved? Assessing the underdetermination of general relativity and teleparallel gravity
- Group Theoretical Analysis of Light-Cone Dominated Hadronic Processes and Twist Decomposition of Nonlocal Operators in Quantum Chromodynamics
- Non-singular screw dislocations as the Coulomb gas with smoothed out coupling and the renormalization of the shear modulus
- Non-free gas of dipoles of non-singular screw dislocations and the shear modulus near the melting
- On gradient enriched elasticity theories: A reply to "Comment on 'On non-singular crack fields in Helmholtz type enriched elasticity theories' " and important theoretical aspects
- On the correspondence between a screw dislocation in gradient elasticity and a regularized vortex
- A Modified Screw Dislocation With Non-Singular Core of Finite Radius From Einstein-Like Gauge Equation (Non-Linear Approach)