Elasticity of ferropericlase at Earth's lower mantle conditions

ORAL

Abstract

The thermoelastic properties of ferropericlase Mg$_{1-x}$Fe$_{x}$O (x = 0.1875) across the iron high-to-low spin crossover at lower mantle conditions have been investigated by combining first principles calculations with a thermodynamics model of this system. At room temperature the transition is somewhat sharp and the effect on the bulk modulus is quite dramatic. Along a typical geotherm the transition should occur across most of the lower mantle with a noticeable bulk modulus reduction in the mid lower mantle. This transition should also alter noticeably the magnitude of velocity heterogeneities caused by lateral temperature changes.

*Resarch supported by NSF/EAR NSF/ITR and ITAMIT

Authors

  • Renata Wentzcovitch

    • University of Minnesota
    • Minnesota Supercomputing Institute and Department of Chemical Engineering and Materials Science, University of Minnesota
    • Department of Chemical Engineering and Materials Science and Minnesota Supercomputing Institute, University of Minnesota, Minneapolis, 55455.
    • U of Minnesota
  • Joao Justo

    • Department of Chemical Engineering and Materials Science and Minnesota Supercomputing Institute, University of Minnesota, Minneapolis, 55455.
    • U of MInnesota
  • Zhongqing Wu

    • University of Minnesota
    • U of Minneosta
    • U of Minnesota
  • Cesar da Silva

    • U of MInnesota