First-principles calculation of the structural stability of 6d transition metals
Abstract
The phase stability of the 6d transition metals (elements 103-111) is investigated using first-principles electronic-structure calculations. Comparison with the lighter transition metals reveals that the structural sequence trend is broken at the end of the 6d series. To account for this anomalous behavior, the effect of relativity on the lattice stability is scrutinized, taking different approximations into consideration. It is found that the mass-velocity and Darwin terms give important contributions to the electronic structure, leading to changes in the interstitial charge density and, thus, in the structural energy difference.
- Publication:
-
Physical Review B
- Pub Date:
- September 2011
- DOI:
- Bibcode:
- 2011PhRvB..84k3104O
- Keywords:
-
- 71.15.Rf;
- 71.15.Nc;
- 71.20.Be;
- 81.05.Bx;
- Relativistic effects;
- Total energy and cohesive energy calculations;
- Transition metals and alloys;
- Metals semimetals and alloys