Structural and magnetic properties of trigonal iron
- 1 March 1996
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 53 (9) , 5119-5122
- https://doi.org/10.1103/physrevb.53.5119
Abstract
First-principles calculations of the electronic structure of trigonal iron were performed using density-functional theory. The results are used to predict lattice spacings, magnetic moments, and elastic properties; these are in good agreement with experiment for both the bcc and fcc structures. We find however, that in extracting these quantities great care must be taken in interpreting numerical fits to the calculated total energies. In addition, the results for bulk iron give insight into the properties of thin iron films. Thin films grown on substrates with mismatched lattice constants often have noncubic symmetry. If they are thicker than a few monolayers their electronic structure is similar to a bulk material with an appropriately distorted geometry, as in our trigonal calculations. We recast our bulk results in terms of an iron film grown on the (111) surface of an fcc substrate, and find the predicted strain energies and moments accurately reflect the trends for iron growth on a variety of substrates. © 1996 The American Physical Society.Keywords
All Related Versions
This publication has 14 references indexed in Scilit:
- Empirical many-body potential energy functions for ironThe Journal of Physical Chemistry, 1993
- Structural and magnetic properties of tetragonally distorted ironUltramicroscopy, 1992
- Difference in total energy between bcc and fcc ironPhysical Review B, 1988
- Electronic and magnetic properties of the fcc Fe(001) thin films: Fe/Cu(001) and Cu/Fe/Cu(001)Physical Review B, 1987
- Theory of Magnetic and Structural Ordering in IronPhysical Review Letters, 1985
- Reliability of the isothermal bulk modulus deduced from model equations of stateJournal of Applied Physics, 1984
- Total-energy full-potential linearized augmented-plane-wave method for bulk solids: Electronic and structural properties of tungstenPhysical Review B, 1984
- Influence of an improved local-spin-density correlation-energy functional on the cohesive energy of alkali metalsPhysical Review B, 1980
- Itinerant ferromagnetism in fcc cobaltSolid State Communications, 1978
- A local exchange-correlation potential for the spin polarized case. iJournal of Physics C: Solid State Physics, 1972