Chun-Mei Li
Chinese Academy of Sciences
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Chun-Mei Li.
Journal of Physics: Condensed Matter | 2013
H. Luo; Qing-Miao Hu; Chun-Mei Li; Börje Johansson; Levente Vitos; Rui Yang
Using the first-principles exact muffin-tin orbitals method in combination with the coherent potential approximation, we investigated the magnetic properties, exchange interactions, and temperature-dependent half-metallicity of the Co2Mn(Ga1-xZx) (Z=Si, Ge, Sn) alloys. The total magnetic moment follows perfectly a previously proposed Slater-Pauling relation, i.e., μ0 = Nt - 24, with Nt being the number of valence electrons. The Co-Mn and Co1-Co2 (inter-sublattice) interactions are dominated by direct exchange, whereas the Co1-Co1 (intra-sublattice) interaction is characterized by superexchange. The Mn-Mn exchange interaction in Co2MnGa is of long-ranged RKKY-type. However, the Mn-Mn exchange interactions in Co2MnZ are relatively localized and can be attributed to superexchange. The Co-Mn, Co1-Co2 and Co1-Co1 total exchange interactions increase with x, whereas the Mn-Mn total exchange interactions show convex behavior. The calculated Curie temperature (TC) increases with x. The ability of Z to enhance TC follows the sequence of Si > Ge > Sn, in agreement with the experimental findings. The temperature dependence of the spin polarization at the Fermi level [P(T)] is investigated based on the disordered local moment model. P(T) drops abruptly at temperatures much lower than TC. At temperatures higher than 200 K, the composition with higher TC generally corresponds to larger P(T).
Scientific Reports | 2017
Chun-Mei Li; Börje Johansson; Levente Vitos
Based on first-principle calculations, we have systematically explored the nature of the elastic stability and the δ-δ′-ε phase transitions in pure Pu at high temperature. It is found that, both the electron-phonon coupling and the spin fluctuation effects tend to decrease the tetragonal elastic constant (C′) of δ-Pu, accounting for its anomalous softening at high temperature. The lattice thermal expansion together with the electron-phonon coupling can stiffen C′ of ε-Pu, promoting its mechanical stability at high temperature. The δ-ε transition is calculated to take place around 750–800 K, and is dominated by the phonon vibration. The δ′ intermediate phase is realized around 750 K mainly because of the thermal spin fluctuation.
Physical Review B | 2010
Chun-Mei Li; H. Luo; Qing-Miao Hu; Rui Yang; Börje Johansson; Levente Vitos
Physical Review B | 2009
Qing-Miao Hu; Chun-Mei Li; Rui Yang; S. E. Kulkova; D. I. Bazhanov; Börje Johansson; Levente Vitos
Physical Review B | 2011
Chun-Mei Li; H. Luo; Qing-Miao Hu; Rui Yang; Börje Johansson; Levente Vitos
Physical Review B | 2012
Chun-Mei Li; H. Luo; Qing-Miao Hu; Rui Yang; Börje Johansson; Levente Vitos
Acta Materialia | 2011
H. B. Luo; Chun-Mei Li; Q. M. Hu; S. E. Kulkova; Börje Johansson; Levente Vitos; R. Yang
Acta Materialia | 2011
H. B. Luo; Chun-Mei Li; Qing-Miao Hu; R. Yang; Börje Johansson; Levente Vitos
Physical Review B | 2012
H. Luo; Qing-Miao Hu; Chun-Mei Li; Rui Yang; Börje Johansson; Levente Vitos
Physical Review B | 2011
Chun-Mei Li; H. Luo; Qing-Miao Hu; Rui Yang; Börje Johansson; Levente Vitos