A multiple-order-parameter theory of ordering on a binary face-centred-cubic (FCC) crystal lattice is developed, and adapted to provide a continuum formulation that incorporates the underlying symmetries of the FCC crystal in both the bulk and gradient-energy terms of the free energy. The theory is used to compute the orientation dependence of the structure and energy of interphase and antiphase boundaries. The structure of these interfaces compares favourably with previous lattice calculations by Kikuchi & Cahn (1962, 1979). Anisotropy is a natural consequence of the lattice calculation and the multiple-order-parameter continuum formulation presented here. This is in contrast to the ad hoc fashion in which anisotropy is often introduce...
Understanding interfacial energy between crystal lattices is of great interest in modeling mechanica...
In this paper the amplitude representation of the anisotropic phase-field crystal (APFC) model recen...
The general principles governing the structure and energy of crystal interfaces are reviewed, parti...
A multiple-order-parameter mean field theory of ordering on a binary hexagonalclose -packed (HCP) cr...
A multiple-order-parameter theory of ordering on a binary face-centred-cubic (f.c.c.) crystal lattic...
The dependence of thermodynamic properties of planar interphase boundaries (IPBs) and antiphase boun...
A nearest neighbor, broken bond model is employed to develop general relationships for the concentra...
The dependence of thermodynamic properties of planar interphase boundaries (IPBs) and antiphase boun...
Minimization of interfacial energy is the dominant factor controlling the shape and orientation of c...
An expression is proposed for the anisotropy of interfacial energy of cubic metals, based on the sym...
International audienceA model of anisotropy of surface energy, resulting from surface segregation, h...
We develop an explicit model for the interfacial energy in crystals that emphasizes the geometric or...
We investigate a model of anisotropic diffuse interfaces in ordered FCC crystals introduced recentl...
We present a theory to study the relation between compositional order and magnetocrystalline anisotr...
We develop a fully microscopic, statistical mechanics approach to study phase transitions in Ising s...
Understanding interfacial energy between crystal lattices is of great interest in modeling mechanica...
In this paper the amplitude representation of the anisotropic phase-field crystal (APFC) model recen...
The general principles governing the structure and energy of crystal interfaces are reviewed, parti...
A multiple-order-parameter mean field theory of ordering on a binary hexagonalclose -packed (HCP) cr...
A multiple-order-parameter theory of ordering on a binary face-centred-cubic (f.c.c.) crystal lattic...
The dependence of thermodynamic properties of planar interphase boundaries (IPBs) and antiphase boun...
A nearest neighbor, broken bond model is employed to develop general relationships for the concentra...
The dependence of thermodynamic properties of planar interphase boundaries (IPBs) and antiphase boun...
Minimization of interfacial energy is the dominant factor controlling the shape and orientation of c...
An expression is proposed for the anisotropy of interfacial energy of cubic metals, based on the sym...
International audienceA model of anisotropy of surface energy, resulting from surface segregation, h...
We develop an explicit model for the interfacial energy in crystals that emphasizes the geometric or...
We investigate a model of anisotropic diffuse interfaces in ordered FCC crystals introduced recentl...
We present a theory to study the relation between compositional order and magnetocrystalline anisotr...
We develop a fully microscopic, statistical mechanics approach to study phase transitions in Ising s...
Understanding interfacial energy between crystal lattices is of great interest in modeling mechanica...
In this paper the amplitude representation of the anisotropic phase-field crystal (APFC) model recen...
The general principles governing the structure and energy of crystal interfaces are reviewed, parti...