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Transformation behavior of NiMnGa in the low-temperature limit

Abstract: The magnetic, magnetocaloric and thermal characteristics have been studied in a Ni50.3Mn20.8Ga27.6V1.3 ferromagnetic shape memory alloy (FSMA) transforming martensitically at around 40 K. The alloy shows first a transformation from austenite to an intermediate phase and then a partial transformation to an orthorhombic martensite, all the phases being ferromagnetically ordered. The thermomagnetization dependences enabled observation of the magnetocaloric effect in the vicinity of the martensitic transformation (MT). The Debye temperature and the density of states at the Fermi level are equal to ?D = (276 ± 4) K and 1.3 states/atom eV , respectively, and scarcely dependent on the magnetic field. The MT exhibited by Ni?Mn?Ga FSMAs at very low temperatures is distinctive in the sense that it is accompanied by a hardly detectable entropy change as a sign of a small driving force. The enhanced stability of the cubic phase and the low driving force of the MT stem from the reduced density of states near the Fermi level.

Other publications of the same journal or congress with authors from the University of Cantabria

 Authorship: Pérez-Landazábal J.I., Recarte V., Sánchez-Alarcos V., Chernenko V.A., Barandiarán J.M., Lázpita P., Rodriguez Fernández J., Righi L.,

 Fuente: Journal of Physics Condensed Matter, 2012, 24(27), 276004

 Publisher: IOP Publishing

 Publication date: 01/07/2012

 No. of pages: 6

 Publication type: Article

 DOI: 10.1088/0953-8984/24/27/276004

 ISSN: 0953-8984,1361-648X

 Spanish project: MAT2009-07928 ; MAT2008-06542-C04

 Publication Url: https://doi.org/10.1088/0953-8984/24/27/276004

Authorship

PEREZ-LANDAZÁBAL, J. I.

RECARTE, V.

SÁNCHEZ ALARCOS, V.

CHERNENKO, V. A.

BARANDIARÁN, J. M.

LÁZPITA, P.