Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5491934 | Physica B: Condensed Matter | 2017 | 17 Pages |
Abstract
In this report the magnetic, atomic structures and spin-lattice coupling have been thoroughly studied through high magnetic field magnetometry, Synchrotron X-ray diffraction under applied magnetic field and magnetostriction measurements in the Tb5Ge4 compounds. A field induced phase transition from an antiferromagnetic towards a ferromagnetic ordering was confirmed but with absence of structural transformation. This absence has been confirmed experimentally through synchrotron x-ray diffraction under applied field (up to 30Â T). Moreover, this absence was explained via a thermodynamic free energy model: first principles calculations determined a large energy gap (ÎE=0.65Â eV) between the two possible structures, O(I) and O(II). From magnetic and structural properties, a H-T phase diagram has been proposed for Tb5Ge4. Finally it was observed a large magnetostriction (up to 600Â ppm) induced by âH=7Â T.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Condensed Matter Physics
Authors
J.H. Belo, M.B. Barbosa, A.L. Pires, R.M. Costa, J.G.V. Teixeira, J. Silva, P.A. Algarabel, C. Magen, L. Morellon, J.S. Amaral, U. Zeitler, G. Veerendra, A.M. dos Santos, Y. Ren, M.R. Ibarra, J.P. Araújo, A.M. Pereira,