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Crystal field excitations in the cubic compound Ce3Rh4Sn13

โœ Scribed by D.T. Adroja; A.M. Strydom; A.P. Murani; W.A. Kockelmann; A. Fraile


Publisher
Elsevier Science
Year
2008
Tongue
English
Weight
154 KB
Volume
403
Category
Article
ISSN
0921-4526

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โœฆ Synopsis


The recent heat capacity measurements of Ce 3 Rh 4 Sn 13 have revealed a broad peak at 1 K with an entropy of 3R ln(2) per f.u., but no clear sign of any magnetic ordering down to 100 mK. In order to understand this anomalous heat capacity behaviour of Ce 3 Rh 4 Sn 13 , we have carried out low-and high-energy inelastic neutron scattering measurements. Our high-energy studies reveal two well-resolved crystal field (CF) excitations at $9 meV and 38 meV. The observation of two CF excitations in the cubic structure of Ce 3 Rh 4 Sn 13 could be explained on the basis of tetragonal point symmetry of the Ce ions. Interestingly, the low-energy measurements apparently show, or are best described by, a quasi-elastic peak and an inelastic peak at $0.2 meV at 1.5 K, both of Lorentzian shape. We attribute the lowenergy peak to Zeeman splitting of the ground state doublet, in the presence of short range magnetic ordering. Further, the low-energy peak explains the observed anomaly in the heat capacity. Published by Elsevier B.V.


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