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Evidence for a metamagnetic transition in the heavy Fermion system CeTiGe

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Fil.: Sereni, J.G. Comisión Nacional de Energía Atómica. Instituto Balseiro. Laboratorio de Bajas Temperaturas; Argentina
Fil.: Deppe, M. Max-Planck Institute for Chemical Physics of Solids; Alemania
Fil.: Caroca-Canales, N. Max-Planck Institute for Chemical Physics of Solids; Alemania
Fil.: Geibel, C. Max-Planck Institute for Chemical Physics of Solids; Alemania

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Centro Atómico Bariloche

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eng

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A recent study of CeTiGe identified this compound as a paramagnetic heavy Fermion system where the full J = 5/2 multiplet is involved in the formation of the ground state. Here we present a preliminary investigation of the dc-magnetization Mdc(H) and of the magnetoresistance ρ(H) of polycrystalline CeTiGe samples in applied magnetic fields up to μ0H = 14 T. The results reveal a pronounced metamagnetic transition at a critical field μ0Hc ≈ 13.5 T at low temperatures, with a step like increase in Mdc(H) of at least 0.6 μB/Ce. The metamagnetic transition leads to a strong decrease in ρ(H). A clear hysteresis in Mdc(H) and ρ(H) indicate that in CeTiGe these metamagnetic features correspond to a true thermodynamic, first order type transition in contrast to the critical behavior observed in the canonical system CeRu2Si2. Measurements at higher temperatures showed a continuous suppression of the metamagnetic transition with increasing T, which vanishes at T ~ 30 K.

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M Deppe et al 2010 J. Phys.: Conf. Ser. 200 012026

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