Abstract
Measurements of the specific heat have been performed on Gd1-x Yx Ni2 (x=0,0.2) compounds and their nonmagnetic analogs Lu1-y Yy Ni2, which have similar molar masses. It is found that the difference between the entropies of magnetic and nonmagnetic compounds with identical molar masses surpasses substantially (by 14-19%) the theoretical limit for the magnetic contribution Sm = (1-x) R ln (8) calculated assuming that only Gd ions possess a magnetic moment. This observed enhancement of the magnetic entropy in Gd1-x Yx Ni2 is believed to result from spin fluctuations induced by f-d exchange in the 3d electron subsystem of Ni. © 2007 The American Physical Society.
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CITATION STYLE
Baranov, N. V., Proshkin, A. V., Gerasimov, E. G., Podlesnyak, A., & Mesot, J. (2007). Enhanced magnetic entropy in Gd Ni2. Physical Review B - Condensed Matter and Materials Physics, 75(9). https://doi.org/10.1103/PhysRevB.75.092402
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