First-principles calculations of the electronic, vibrational, and elastic properties of the magnetic laminate Mn2GaC

被引:0
|
作者
20151100639083
机构
[1] Thore, A.
[2] Dahlqvist, M.
[3] Alling, B.
[4] Rosén, J.
来源
Thore, A. (andth@ifm.liu.se) | 1600年 / American Institute of Physics Inc.卷 / 116期
关键词
In this paper; we report the by first-principles predicted properties of the recently discovered magnetic MAX phase Mn2GaC. The electronic band structure and vibrational dispersion relation; as well as the electronic and vibrational density of states; have been calculated. The band structure close to the Fermi level indicates anisotropy with respect to electrical conductivity; while the distribution of the electronic and vibrational states for both Mn and Ga depend on the chosen relative orientation of the Mn spins across the Ga sheets in the Mn-Ga-Mn trilayers. In addition; the elastic properties have been calculated; and from the five elastic constants; the Voigt bulk modulus is determined to be 157 GPa; the Voigt shear modulus 93 GPa; and the Young's modulus 233 GPa. Furthermore; Mn2GaC is found relatively elastically isotropic; with a compression anisotropy factor of 0.97; and shear anisotropy factors of 0.9 and 1; respectively. The Poisson's ratio is 0.25. Evaluated elastic properties are compared to theoretical and experimental results for M2AC phases where M = Ti; V; Cr; Zr; Nb; Ta; and A = Al; S; Ge; In; Sn. © 2014 AIP Publishing LLC;
D O I
暂无
中图分类号
学科分类号
摘要
Journal article (JA)
引用
收藏
相关论文
共 50 条
  • [1] First-principles calculations of the electronic, vibrational, and elastic properties of the magnetic laminate Mn2GaC
    Thore, A.
    Dahlqvist, M.
    Alling, B.
    Rosen, J.
    JOURNAL OF APPLIED PHYSICS, 2014, 116 (10)
  • [2] Magnetic exchange interactions and critical temperature of the nanolaminate Mn2GaC from first-principles supercell methods
    Thore, A.
    Dahlqvist, M.
    Alling, B.
    Rosen, J.
    PHYSICAL REVIEW B, 2016, 93 (05)
  • [3] Electronic, magnetic and elastic properties of Mo2FeB2: First-principles calculations
    Wang, Bin
    Liu, Ying
    Ye, Jin-Wen
    Wang, Jie
    COMPUTATIONAL MATERIALS SCIENCE, 2013, 70 : 133 - 139
  • [4] The electronic and the magnetic properties of Mn doped wurtzite CdS: First-principles calculations
    Nabi, Azeem
    COMPUTATIONAL MATERIALS SCIENCE, 2016, 112 : 210 - 218
  • [5] Electronic, vibrational, and superconducting properties of CaBeSi: First-principles calculations
    Bersier, C.
    Floris, A.
    Sanna, A.
    Profeta, G.
    Continenza, A.
    Gross, E. K. U.
    Massidda, S.
    PHYSICAL REVIEW B, 2009, 79 (10)
  • [6] A Nanolaminated Magnetic Phase: Mn2GaC
    Ingason, A. S.
    Petruhins, A.
    Dahlqvist, M.
    Magnus, F.
    Mockute, A.
    Alling, B.
    Hultman, L.
    Abrikosov, I. A.
    Persson, P. O. A.
    Rosen, J.
    MATERIALS RESEARCH LETTERS, 2014, 2 (02): : 89 - 93
  • [7] First-principles study of electronic, vibrational, elastic, and magnetic properties of FeF2 as a function of pressure
    Lopez-Moreno, S.
    Romero, A. H.
    Mejia-Lopez, J.
    Munoz, A.
    Roshchin, Igor V.
    PHYSICAL REVIEW B, 2012, 85 (13)
  • [8] Electronic and magnetic properties of Mn-doped CdSe nanoribbon: first-principles calculations
    Ismayilova, N. A.
    EUROPEAN PHYSICAL JOURNAL PLUS, 2024, 139 (04):
  • [9] First-principles calculations of the elastic, electronic and optical properties of AgGaS2
    Hou Hai-Jun
    Zhu Shi-Fu
    Zhao Bei-Jun
    Yu You
    Xie Lin-Hua
    PHYSICA SCRIPTA, 2010, 82 (05)
  • [10] Elastic and electronic properties of ScMn2 from first-principles calculations
    Wu, Meng-Meng
    Tang, Bi-Yu
    Peng, Li-Ming
    Ding, Wen-Jing
    PHYSICA B-CONDENSED MATTER, 2010, 405 (23) : 4812 - 4817