Calculation of Multipolar Exchange Interactions in Spin-Orbital Coupled Systems

ORAL

Abstract

A new method of computing multipolar exchange interaction in spin-orbit coupled systems is developed using multipolar tensor expansion of the density matrix in LDA+U electronic structure calculation. Within mean-field approximation, exchange constants can be mapped into a series of total energy calculations by pair-flip technique. Application to Uranium dioxide shows an antiferromagnetic superexchange coupling in dipoles but ferromagnetic in quadrupoles which is very different from past studies. Further calculation of spin-lattice interaction indicates it is of the same order with superexchange and characterizes the overall behavior of quadrupolar part as a competition between them.

*We are grateful to X. Wan and R. Dong for their help-ful discussions. This work was supp orted by US DOE Nuclear Energy University Program under Contract No. 00088708.

Authors

  • Shu-Ting Pi

    • Dept. of Physics, UC Davis
  • Ravindra Nanguneri

    • Dept. of Physics, UC Davis
  • Sergey Savrasov

    • Dept. of Physics, UC Davis
    • University of California, Davis