Title :
First-Principles Calculations of Magnetic Properties of Cr-Doped Ni45Co5Mn37In13 Heusler Alloys
Author :
Sokolovskiy, Vladimir V. ; Buchelnikov, Vasiliy D. ; Gruner, Markus E. ; Entel, Peter
Author_Institution :
Chelyabinsk State Univ., Chelyabinsk, Russia
Abstract :
The magnetic and electronic properties of Co- and Cr-doped Ni50Mn37In13 Heusler alloys with a substitution of 5 at.% Co for Ni and 5 at.% Cr for Ni, Mn, or In are investigated in the framework of the density functional theory method. The chemical disorder in the off-stoichiometric Ni-Co-Mn-Cr-In systems was treated in the coherent potential approximation. Three different ferrimagnetic and one ferromagnetic (FM) spin states for austenite and martensite were considered in ab initio calculations. It is found that for both structures, the intersublattice interactions (MnY(Z)-Co, MnY(Z)-Ni, MnY(Z)-MnZ(Y), MnY(Z)-Cr, and Cr-Co) provide the largest contribution to the exchange due to the shorter distance compared with the intrasublattice interactions (MnY(Z)-MnY(Z), Co-Co, Ni-Ni, and Cr-Cr). Besides, the MnY-MnZ and MnY(Z)-Cr exchanges in the first shell become five times larger in martensite compared with austenite. The largest anti-FM interaction is observed between MnY(Z)-Cr atoms in martensite.
Keywords :
CPA calculations; ab initio calculations; antiferromagnetic materials; chromium alloys; cobalt alloys; density functional theory; electronic density of states; exchange interactions (electron); ferrimagnetic materials; ferromagnetic materials; indium alloys; manganese alloys; nickel alloys; stoichiometry; Cr-doped Heusler alloys; Ni45Co5Mn37In13Cr; ab initio calculations; antiferromagnetic interaction; austenite; chemical disorder; coherent potential approximation; density functional theory; electronic properties; exchange contribution; ferrimagnetic spin states; ferromagnetic spin states; first-principles calculations; intersublattice interactions; intrasublattice interactions; magnetic properties; martensite; off-stoichiometric Ni-Co-Mn-Cr-In systems; Elementary particle exchange interactions; Frequency modulation; Magnetic moments; Magnetic properties; Manganese; Nickel; Ab initio calculations; Heusler alloys; ab initio calculations; density of state; density of state (DOS); exchange couplings;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2015.2439391