All Stories

  1. Geometrical Constraints on the Bending Deformation of Penta-Twinned Silver Nanowires
  2. Atomistic simulations of grain boundary migration under recrystallisation conditions
  3. Dispersoid composition in zirconium containing Al-Zn-Mg-Cu (AA7010) aluminium alloy
  4. The effect of irradiation temperature on damage structures in proton-irradiated zirconium alloys
  5. Imaging Three-Dimensional Elemental Inhomogeneity in Pt–Ni Nanoparticles Using Spectroscopic Single Particle Reconstruction
  6. Advanced 3D characterisation of iodine induced stress corrosion cracks in zirconium alloys
  7. Investigating the thermal stability of irradiation-induced damage in a zirconium alloy with novel in situ techniques
  8. The Effect of Iron on Dislocation Evolution in Model and Commercial Zirconium Alloys
  9. Modelling the interaction of primary irradiation damage and precipitates: Implications for experimental irradiation of zirconium alloys
  10. The effect of matrix chemistry on dislocation evolution in an irradiated Zr alloy
  11. Atomistic migration mechanisms of atomically flat, stepped, and kinked grain boundaries
  12. Mechanisms and kinetics of the migration of grain boundaries containing extended defects
  13. Quantifying uncertainty in molecular dynamics simulations of grain boundary migration
  14. Role of the mesoscale in migration kinetics of flat grain boundaries
  15. Influence of the dislocation core on the glide of the ½〈111〉{110} edge dislocation in bcc-iron: An embedded atom method study
  16. Ab initioand atomistic study of generalized stacking fault energies in Mg and Mg–Y alloys
  17. Quantum–classical simulations of the electronic stopping force and charge on slow heavy channelling ions in metals
  18. Resonant charging and stopping power of slow channelling atoms in a crystalline metal
  19. A new directional model for the electronic frictional forces in molecular dynamics simulations of radiation damage in metals
  20. Quantum mechanical simulations of electronic stopping in metals
  21. A Radiation Damage Cascade
  22. Appendices
  23. Concluding Remarks
  24. Introduction
  25. The Electronic Drag Force
  26. The Single Oscillating Ion
  27. Theoretical Background
  28. A Framework for Simulating Radiation Damage in Metals
  29. Channelling Ions
  30. Semi-classical Simulations of Collision Cascades
  31. The Electronic Forces
  32. The Nature of the Electronic Excitations
  33. The Treatment of Electronic Excitations in Atomistic Simulations of Radiation Damage—A Brief Review
  34. The treatment of electronic excitations in atomistic models of radiation damage in metals
  35. Modelling non-adiabatic processes using correlated electron-ion dynamics
  36. An improved model of interatomic forces for large simulations of metals containing excited electrons
  37. Electronic excitations and their effect on the interionic forces in simulations of radiation damage in metals
  38. How good is damped molecular dynamics as a method to simulate radiation damage in metals?
  39. Correlated electron-ion dynamics in metallic systems
  40. Electronic damping of atomic dynamics in irradiation damage of metals