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Electronic Properties of Transuranium Compounds with HoCoGa$_5$-Type Tetragonal Crystal Structure

Strongly Correlated Electrons 2007-05-23 v1

Abstract

By using a relativistic linear augmented-plane-wave method with the one-electron potential in the local-density approximation, we investigate energy band structures and the Fermi surfaces of transuranium compounds NpTGa5_5, PuTGa5_5, and AmCoGa5_5 with transition metal atoms T. It is found in common that the energy bands in the vicinity of the Fermi level are mainly due to the large hybridization between 5f5f and Ga 4p4p electrons. For PuTGa5_5, we observe several cylindrical sheets of Fermi surfaces with large volume for T=Co, Rh, and Ir. The de Haas-van Alphen (dHvA) frequencies are theoretically estimated for PuCoGa5_5. It is also found that the Fermi surfaces of NpFeGa5_5, NpCoGa5_5, and NpNiGa5_5 are similar to those of UCoGa5_5, UNiGa5_5, and PuCoGa5_5, respectively, except for small details. For AmCoGa5_5, the Fermi surfaces are found to consist of large cylindrical electron sheets and small closed hole sheets, similar to PuCoGa5_5. The similarity is basically understood by the change of electron numbers inside the Fermi surfaces on the basis of a rigid-band picture. We discuss our theoretical Fermi surfaces with the dHvA experimental results on NpTGa5_5.

Keywords

Cite

@article{arxiv.cond-mat/0412647,
  title  = {Electronic Properties of Transuranium Compounds with HoCoGa$_5$-Type Tetragonal Crystal Structure},
  author = {Takahiro Maehira and Takashi Hotta and Kazuo Ueda and Akira Hasegawa},
  journal= {arXiv preprint arXiv:cond-mat/0412647},
  year   = {2007}
}

Comments

13 pages, 20 figures