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Ab initio Studies on Magnetism of 3d Transition Metal Dimers
Authors:J.H. Gu  Z.L. Zhu
Affiliation:School of Physical Engineering and Material Physics Laboratory, Zheng Zhou University, Zhengzhou 450052, China
Abstract:
Ab initio calculations with the self-consistent full-potential linearized augmented-plane-wave method (FLAPW), under generalized gradient approximation, have been carried out to describe the electronic and magnetic properties of 3d transition metal dimers. It predicted the antiferromagneticity of Cr2 and ferromagneticity of other species. The Mn2 dimer was shown to be ferromagnetic coupling with a local magnetic moment of 5μB. Retaining the value of its free atom state. The V2 and Ni2 exhibited low spin-polarization with local magnetic moment of only 1μB per atom. On the other hand, Fe2 and Co2 were highly spin-polarized with local magnetic moments of 3 and 2μB.
Keywords:magnetism  3d transition metal dimer  ab initio calculation  TRANSITION METAL  MAGNETISM  STUDIES  ferromagnetic coupling  moments  hand  value  free  atom  state  dimer  local  magnetic moment  species  electronic  magnetic properties  transition metal  generalized gradient  approximation  FLAPW
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