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Effects of Magnetic Field and Pressure on the Valence-Fluctuating Antiferromagnetic Compound EuPt2Si2

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PHYSICAL SOC JAPAN
DOI: 10.7566/JPSJ.87.074709

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  1. JSPS KAKENHI Grant [JP16H01078, JP17K05547, JP16K05453, JP15K05156, JP15H05884, JP15H05882, JP16H04006]

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The effects of a magnetic field and pressure on the Kondo-like behavior in the valence-fluctuating antiferromagnetic compound EuPt2Si2 were studied using single-crystalline samples. The logarithmic temperature dependence of the electrical resistivity, rho(T) proportional to-ln T, which is reminiscent of the Kondo effect, is robust against the application of a magnetic field. On the other hand, the temperature dependences of rho(T) and thermoelectric power S(T) change markedly under pressure. In addition, the antiferromagnetically ordered temperature T-N1 = 21K at ambient pressure decreases gradually and reaches zero at approximately P = 4 GPa. From the comparison of the magnetic properties of EuPt2Si2 with those of EuCu2(Ge0.4Si0.6)(2), the observed anomalous features for EuPt2Si2 at low temperatures are inferred to be due to a valence fluctuation and= or a valence change of the Eu ions at low temperatures.

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