English

Zero-temperature generalized phase diagram of the 4d transition metals under pressure

Materials Science 2009-11-13 v3

Abstract

We use an accurate implementation of density functional theory (DFT) to calculate the zero-temperature generalized phase diagram of the 4dd series of transition metals from Y to Pd as a function of pressure PP and atomic number ZZ. The implementation used is full-potential linearized augmented plane waves (FP-LAPW), and we employ the exchange-correlation functional recently developed by Wu and Cohen. For each element, we obtain the ground-state energy for several crystal structures over a range of volumes, the energy being converged with respect to all technical parameters to within 1\sim 1 meV/atom. The calculated transition pressures for all the elements and all transitions we have found are compared with experiment wherever possible, and we discuss the origin of the significant discrepancies. Agreement with experiment for the zero-temperature equation of state is generally excellent. The generalized phase diagram of the 4dd series shows that the major boundaries slope towards lower ZZ with increasing PP for the early elements, as expected from the pressure induced transfer of electrons from spsp states to dd states, but are almost independent of PP for the later elements. Our results for Mo indicate a transition from bcc to fcc, rather than the bcc-hcp transition expected from spsp-dd transfer.

Keywords

Cite

@article{arxiv.0803.1904,
  title  = {Zero-temperature generalized phase diagram of the 4d transition metals under pressure},
  author = {C. Cazorla and D. Alf`e and M. J. Gillan},
  journal= {arXiv preprint arXiv:0803.1904},
  year   = {2009}
}

Comments

28 pages and 10 figures. Submitted to Phys. Rev. B

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