Magnetic, specific heat and electrical transport properties of Frank-Kasper cage compounds RTMAl [R = Eu,Gd and La ; TM = V,Ti]
arXiv:1609.03458 · doi:10.1088/0953-8984/28/43/436002
Abstract
Single crystals of Frank-Kasper compounds RTMAl (R = Eu, Gd and La; TM = V and Ti) were grown by self-flux method and their physical properties were investigated through magnetization (), magnetic susceptibility (), specific heat () and electrical resistivity () measurements. Powder x-ray diffraction studies and structural analysis showed that these compounds crystallize in the cubic crystal structure with the space group . The magnetic susceptibility for the compounds EuTiAl and GdTiAl showed a sudden jump below the N{é}el temperature indicative of plausible double magnetic transition. Specific heat () and electrical resistivity () measurements also confirm the first-order magnetic transition (FOMT) and possible double magnetic transitions. Temperature variation of heat capacity showed a sharp phase transition and huge value for the (Eu/Gd)TiAl compounds Full width at half-maximum (FWHM) 0.2 K) which is reminiscent of a first-order phase transition and a unique attribute among RTMAl compounds. We observed clear anomaly between heating and cooling cycle in temperature-time relaxation curve for the compounds GdTiAl (2.38 ) and EuTiAl (3.2 ) which is indicating a thermal arrest due to the latent heat. The temperature variation of for GdTiAl saturates to a value while the other magnetic systems exhibited still lower entropy saturation values in the high temperature limit. Resistivity measurements showed that all the samples behave as normal Fermi liquid type compounds and due to electron-phonon scattering follows Bloch-Grneisen-Mott relation in the paramagnetic region.
13 figures, 3 Tables
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