ABSTRACT

This book covers the essentials of Computational Science and gives tools and techniques to solve materials science problems using molecular dynamics (MD) and first-principles methods. The new edition expands upon the density functional theory (DFT) and how the original DFT has advanced to a more accurate level by GGA+U and hybrid-functional methods. It offers 14 new worked examples in the LAMMPS, Quantum Espresso, VASP and MedeA-VASP programs, including computation of stress-strain behavior of Si-CNT composite, mean-squared displacement (MSD) of ZrO2-Y2O3, band structure and phonon spectra of silicon, and Mo-S battery system. It discusses methods once considered too expensive but that are now cost-effective. New examples also include various post-processed results using VESTA, VMD, VTST, and MedeA.

chapter 1|10 pages

Introduction

chapter 2|36 pages

Molecular dynamics

chapter 3|52 pages

MD exercises with XMD and LAMMPS

chapter 4|32 pages

First-principles methods

chapter 5|42 pages

Density functional theory

chapter 6|44 pages

Treating solids

chapter 7|26 pages

DFT exercises with Quantum Espresso

chapter 8|56 pages

DFT exercises with VASP

chapter 9|20 pages

DFT exercises with MedeA-VASP