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Magnetic anomalies in single crystalline ErPd2Si2
Authors:E.V. Sampathkumaran,Niharika Mohapatra,Kartik K. Iyer,C.D. Cao,W. Lö  ser,G. Behr
Affiliation:1. Tata Institute of Fundamental Research, Homi Bhabha Road, Colaba, Mumbai 400005, India;2. Leibnitz-Institut für Festkörper-und Werkstoffforschung Dresden, Postfach 270116, D-01171 Dresden, Germany;3. Department of Applied Physics, Northwestern Polytechnical University, Xi’an 710072, PR China
Abstract:
Considering certain interesting features in the previously reported 166Er Mössbauer effect, and neutron diffraction data on the polycrystalline form of ErPd2Si2 crystallizing in the ThCr2Si2-type tetragonal structure, we have carried out magnetic measurements (1.8–300 K) on the single crystalline form of this compound. We observe significant anisotropy in the absolute values of magnetization (indicating that the easy axis is c-axis) as well as in features due to magnetic ordering in the plot of magnetic susceptibility χ versus temperature T at low temperatures. The χ(T) data reveal that there is a pseudo-low-dimensional magnetic order setting in at 4.8 K, with a three-dimensional antiferromagnetic order setting in at a lower temperature (3.8 K). A new finding in the χ(T) data is that, for H∥〈1 1 0〉 but not for H∥〈0 0 1〉, there is a broad shoulder in the range 8–20 K, indicative of the existence of magnetic correlations above 5 K as well, which could be related to the previously reported slow-relaxation-dominated Mössbauer spectra. Interestingly, the temperature coefficient of electrical resistivity is found to be isotropic; no feature due to magnetic ordering could be detected in the electrical resistivity data at low temperatures, which is attributed to magnetic Brillioun-zone boundary gap effects. The results reveal the complex nature of magnetism of this compound.
Keywords:75.50.&minus  y   75.30.Cr   75.20.En   75.20.Hr
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