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Woolf, L.D.; Johnston, D.C.; Mook, H.A.; Koehler, W.C.; Maple, M.B.; Fisk, Z.
Exxon Research and Engineering Co., Linden, NJ (USA). Corporate Research Science Lab.; Oak Ridge National Lab., TN (USA); California Univ., San Diego, La Jolla (USA). Inst. of Pure and Applied Physical Sciences1981
Exxon Research and Engineering Co., Linden, NJ (USA). Corporate Research Science Lab.; Oak Ridge National Lab., TN (USA); California Univ., San Diego, La Jolla (USA). Inst. of Pure and Applied Physical Sciences1981
AbstractAbstract
[en] Analysis of neutron-diffraction data on the compound (Ho0.6Er0.4)Rh4B4 indicates that the Curie temperature is depressed by about 0.2 K due to the occurrence of superconductivity, in agreement with theoretical predictions. The temperature dependence of the specific heat in the vicinity of the first-order reentrant superconducting - ferromagnetic transition was computed by means of a simple model from the temperature dependence of the spontaneous magnetization of the Ho ions and was found to be in good agreement with the experimental data
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Sep 1981; 10 p; 16. international conference on low temperature physics; Los Angeles, CA (USA); 19 - 25 Aug 1981; Available from NTIS., PC A02/MF A01 as DE82020890
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Report
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BORIDES, BORON COMPOUNDS, COHERENT SCATTERING, DIFFRACTION, ELECTRIC CONDUCTIVITY, ELECTRICAL PROPERTIES, ERBIUM COMPOUNDS, HOLMIUM COMPOUNDS, MAGNETIC MOMENTS, MAGNETIC PROPERTIES, PHYSICAL PROPERTIES, RARE EARTH COMPOUNDS, RHODIUM COMPOUNDS, SCATTERING, THERMODYNAMIC PROPERTIES, TRANSITION ELEMENT COMPOUNDS
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