Abstract
In this paper, we report temperature-dependent magnetic susceptibility, electrical resistivity, and heat-capacity experiments in the family of intermetallic compounds RNi3Ga9 (R = Tb, Dy, Ho, and Er). Single-crystalline samples were grown using Ga self-flux method. These materials crystallize in a trigonal ErNi3Al9-type structure with space group R32. They all order antiferromagnetically with TN<20K. The anisotropic magnetic susceptibility presents large values of the ratio χeasy/χhard indicating strong crystalline electric-field (CEF) effects. The evolution of the crystal-field scheme for each R was analyzed in detail by using a spin model including anisotropic nearest-neighbor Ruderman-Kittel-Kasuya-Yosida interaction and the trigonal CEF Hamiltonian. Our analysis allows one to understand the distinct direction of the ordered moments along the series - the Tb-, Dy-, and Ho-based compounds have the ordered magnetic moments in the easy ab plane and the Er sample magnetization easy axis is along the ĉ direction.
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CITATION STYLE
Silva, L. S., Mercena, S. G., Garcia, D. J., Bittar, E. M., Jesus, C. B. R., Pagliuso, P. G., … Duque, J. G. S. (2017). Crystal field effects in the intermetallic RNi3Ga9 (R=Tb, Dy, Ho, and Er) compounds. Physical Review B, 95(13). https://doi.org/10.1103/PhysRevB.95.134434
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