Three investigations are described in this dissertation, on the common theme of obtaining constitutive laws describing bulk properties of crystalline materials. We use ‘first-principles’ techniques where possible, an approach offering results which are predictive, with applicability to a wide class of materials, and with a systematic way to apply the techniques to any particular material of interest. We apply these techniques to silicon. The first investigation aims at developing an equation of state model for temperature dependent, anisotropic non-linear hyperelasticity. A method is presented for finding deformed states of a material on the same isentrope as a given starting configuration. The energies and stresses of a number of elastic ...
In this dissertation, a high-fidelity atomistic-to-continuum link for highly non-equilibrium process...
Equilibrium and non-equilibrium molecular-dynamics simulations are employed in this study to investi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2001.Includes ...
We describe how ab initio molecular dynamics can be used to determine the Hugoniot locus (states acc...
Based on first-principles density-functional calculations, we have developed and tested a force-fiel...
Using harmonic and anharmonic force constants extracted from density functional calculations within ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2010.Catalo...
The success of first principles electronic structure calculation for predictive modeling in chemistr...
The success of first-principles electronic-structure calculation for predictive modeling in chemistr...
We report results of molecular dynamics simulation of shock wave propagation in silicon in [100], [1...
[[abstract]]This paper proposes a novel atomistic-continuum mechanics (ACM) based on the finite elem...
Simulations based on molecular dynamics (MD) provide insight into processes occuring on atomic-scale...
Molecular dynamics simulation was carried out to estimate volume expansion coefficients and compress...
First principles-based modeling on phonon dynamics and transport using density functional theory and...
Although over the past years huge progress has been made in silicon research and silicon can be rega...
In this dissertation, a high-fidelity atomistic-to-continuum link for highly non-equilibrium process...
Equilibrium and non-equilibrium molecular-dynamics simulations are employed in this study to investi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2001.Includes ...
We describe how ab initio molecular dynamics can be used to determine the Hugoniot locus (states acc...
Based on first-principles density-functional calculations, we have developed and tested a force-fiel...
Using harmonic and anharmonic force constants extracted from density functional calculations within ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2010.Catalo...
The success of first principles electronic structure calculation for predictive modeling in chemistr...
The success of first-principles electronic-structure calculation for predictive modeling in chemistr...
We report results of molecular dynamics simulation of shock wave propagation in silicon in [100], [1...
[[abstract]]This paper proposes a novel atomistic-continuum mechanics (ACM) based on the finite elem...
Simulations based on molecular dynamics (MD) provide insight into processes occuring on atomic-scale...
Molecular dynamics simulation was carried out to estimate volume expansion coefficients and compress...
First principles-based modeling on phonon dynamics and transport using density functional theory and...
Although over the past years huge progress has been made in silicon research and silicon can be rega...
In this dissertation, a high-fidelity atomistic-to-continuum link for highly non-equilibrium process...
Equilibrium and non-equilibrium molecular-dynamics simulations are employed in this study to investi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2001.Includes ...