Magnetic Phase Diagram and Fermi Surface Properties of CeRu2(Si1-xGex)2
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概要
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We report the magnetic, transport and de Haas--van Alphen (dHvA) effect measurements to investigate the evolutions of metamagnetic behavior and electronic structure with Ge concentration x in CeRu2(Si1-xGex)2. With decreasing x, the ground state changes from ferromagnetic state to antiferromagnetic state at x_{a} = 0.58, then to paramagnetic state at x_{c} = 0.065. When a magnetic field is applied parallel to the [001] direction, first order metamagnetic transition takes place in the anitferromagnetic state and it changes to metamagnetic crossover in the paramagnetic state at x_{c}. It is also found that the metamagnetic behavior as well as the magnetic phase diagram qualitatively change at x_{b} = 0.29. The transport and dHvA effect measurements have been performed with fields applied in the (001) plane for which no metamagnetic transition takes place. With decreasing x, the magnitudes of the residual resistivity at 0.5 K, the coefficient A of T^{2} term in the temperature dependence of resistivity, the magnetoresistivity and the Hall resistivity increase discontinuously across x_{a}. In the antiferromagnetic states they do not change much between x_{a} and x_{b} and then increases rapidly with decreasing x down to x_{c}. Then, in the paramagnetic state they decrease with decreasing x, indicating that they are enhanced around x_{c} in the antiferromagnetic and paramagnetic states. However, they seem to be maximum between x= 0.2 and x_{c}, but not at x_{c}. There may be also discontinuous changes in the transport properties across x_{b} and x_{c}. In the ferromagnetic state, we can observe the dHvA oscillations which are attributed to the electron surfaces as well as from the ellipsoidal hole surfaces in CeRu2Ge2 where the f electron is localized. In the antiferromagnetic state for x < x_{a} we can not observe the dHvA oscillations from the electron surface, while we can observe those from the ellipsoidal hole surfaces which are also present in CeRu2Si2 where the f electron is itinerant. The effective mass is found to be enhanced around x_{c}. We discuss the characteristic behavior of the metamagnetic transition in this system compared with other system. From the discontinuous changes at x_{a} found in the transport and dHvA effect measurements, we argue that the f electron is likely to change its nature form localized to itinerant at x_{a}.
- 2011-07-15
著者
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TERASHIMA Taichi
National Institute for Materials Science
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KIMATA Motoi
National Institute for Materials Science
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UJI Shinya
National Institute for Materials Science
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KIMURA Noriaki
Graduate School of Science and Center for Low Temperature Science, Tohoku University
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KOMATSUBARA Takemi
Graduate School of Science and Center for Low Temperature Science, Tohoku University
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AOKI Haruyoshi
Graduate School of Science and Center for Low Temperature Science, Tohoku University
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Sugi Motoki
Graduate School Of Science And Center For Low Temperature Science Tohoku University
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Matsumoto Yuji
Graduate School Of Agricultural And Life Sciences The University Of Tokyo
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Komatsubara Takemi
Graduate School of Science and Center for Low Temperature Science, Tohoku University, Sendai 980-8578, Japan
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Uji Shinya
National Institute for Materials Science, Tsukuba, Ibaraki 305-0003, Japan
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Aoki Kosuke
Graduate School of Science and Center for Low Temperature Science, Tohoku University, Sendai 980-8578, Japan
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Shimizu Yasunobu
Graduate School of Science and Center for Low Temperature Science, Tohoku University, Sendai 980-8578, Japan
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Kimata Motoi
National Institute for Materials Science, Tsukuba, Ibaraki 305-0003, Japan
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Kimura Noriaki
Graduate School of Science and Center for Low Temperature Science, Tohoku University, Sendai 980-8578, Japan
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Terashima Taichi
National Institute for Materials Science, Tsukuba, Ibaraki 305-0003, Japan
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Aoki Haruyoshi
Graduate School of Science and Center for Low Temperature Science, Tohoku University, Sendai 980-8578, Japan
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