Electron Transport and Magneto-optical Properties of Magnetic Shape-memory $Ni_2NnGa$ Alloy

  • Lee, Y.P. (Department of Physics, Hangyang University) ;
  • Lee, S.J. (Department of Physics, Hangyang University) ;
  • Kim, C.O. (Department of Physics, Hangyang University) ;
  • Jin, X.S. (Beijing University of Aeronautics and Astronautics) ;
  • Zhou, Y. (Beijing University of Aeronautics and Astronautics) ;
  • Kudryavtsev, Y.V. (Institute of Metal Physics, NASU) ;
  • Rhee, J.Y. (Department of Physics, Hoseo University)
  • Published : 2002.06.01

Abstract

The physical properties, including magneto-optical and transport ones, of Ni$_2$MnG$_2$ alloy in the martensitic and austenitic states were investigated. The dependence of the temperature coefficient of resistivity on temperature shows kinks at the structural and ferro-para magnetic transitions. Electron-magnon and electron-phonon scattering are analyzed to be the dominant scattering mechanisms of the Ni$_2$MnG$_2$ alloy in the martensitic and austenitic states, respectively. The experimental real parts of the off-diagonal components of the dielectric function present two sharp peaks, one at 1.9 eV and the other at 3.2 eV, and a broad shoulder at 3.5 eV, all are identified by the band-structure calculations. These peak positions are coincident with those in the corresponding optical-conductivity spectrum, which is thought to originate from the single-spin state in Ni$_2$MnG$_2$ alloy.

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