English

Reinterpretation of bond-valence model with bond-order formalism: an improved bond-valence based interatomic potential for PbTiO$_3$

Materials Science 2013-09-09 v2 Computational Physics

Abstract

We present a modified bond-valence model of PbTiO3_3 based on the principles of bond-valence and bond-valence vector conservation. The relationship between the bond-valence model and the bond-order potential is derived analytically in the framework of a tight-binding model. A new energy term, bond-valence vector energy, is introduced into the atomistic model and the potential parameters are re-optimized. The new model potential can be applied both to canonical ensemble (NVTNVT) and isobaric-isothermal ensemble (NPTNPT) molecular dynamics (MD) simulations. This model reproduces the experimental phase transition in NVTNVT MD simulations and also exhibits the experimental sequence of temperature-driven and pressure-driven phase transitions in NPTNPT simulations. We expect that this improved bond-valence model can be applied to a broad range of inorganic materials.

Keywords

Cite

@article{arxiv.1211.5166,
  title  = {Reinterpretation of bond-valence model with bond-order formalism: an improved bond-valence based interatomic potential for PbTiO$_3$},
  author = {Shi Liu and Ilya Grinberg and Hiroyuki Takenaka and Andrew M. Rappe},
  journal= {arXiv preprint arXiv:1211.5166},
  year   = {2013}
}

Comments

16 pages, 8 figures