Magnetic ground state of CeNi$_{1-x}$Cu$_{x}$: A calorimetric investigation

Physics – Condensed Matter – Strongly Correlated Electrons

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13 pages, 12 figures, submitted to Phys. Rev. B

Scientific paper

10.1103/PhysRevB.71.134401

We present a detailed specific heat study of the CeNi$_{1-x}$Cu$_{x}$series in a large temperature range of 0.2 K to 300 K. The analysis of these data, considering also previous neutron scattering, magnetic characterization and $\mu$SR results, allows us to present a convenient description of the system as inhomogeneous on the nanometric scale. Two regimes are detected in the compositional range depending on the dominant RKKY or Kondo interactions. We propose that the long-range magnetic order at low temperatures is achieved by a percolative process of magnetic clusters that become static below the freezing temperature $T_{f}$. In this scenario the existence of a Quantum Critical Point at the magnetic-nonmagnetic crossover must be discarded.

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