English

Quantum Critical Fluctuations in the Heavy fermion compound Ce(Ni$_{0.935}$Pd$_{0.065}$)$_2$Ge$_2$

Strongly Correlated Electrons 2014-12-09 v1

Abstract

Electric resistivity, specific heat, magnetic susceptibility, and inelastic neutron scattering experiments were performed on a single crystal of the heavy fermion compound Ce(Ni0.935_{0.935}Pd0.065_{0.065})2_2Ge2_2 in order to study the spin fluctuations near an antiferromagnetic (AF) quantum critical point (QCP). The resistivity and the specific heat coefficient for TT \leq 1 K exhibit the power law behavior expected for a 3D itinerant AF QCP (ρ(T)T3/2\rho(T) \sim T^{3/2} and γ(T)γ0bT1/2\gamma(T) \sim \gamma_0 - b T^{1/2}). However, for 2 T\leq T \leq 10 K, the susceptibility and specific heat vary as logTlog T and the resistivity varies linearly with temperature. Furthermore, despite the fact that the resistivity and specific heat exhibit the non-Fermi liquid behavior expected at a QCP, the correlation length, correlation time, and staggered susceptibility of the spin fluctuations remain finite at low temperature. We suggest that these deviations from the divergent behavior expected for a QCP may result from alloy disorder.

Keywords

Cite

@article{arxiv.1411.3689,
  title  = {Quantum Critical Fluctuations in the Heavy fermion compound Ce(Ni$_{0.935}$Pd$_{0.065}$)$_2$Ge$_2$},
  author = {C. H. Wang and L. Poudel and A. E. Taylor and J. M. Lawrence and A. D. Christianson and S. Chang and J. A. Rodriguez-Rivera and J. W. Lynn and A. A. Podlesnyak and 1 G. Ehlers and R. E. Baumbach and E. D. Bauer and K. Gofryk and F. Ronning and K. J. McClellan and J. D. Thompson},
  journal= {arXiv preprint arXiv:1411.3689},
  year   = {2014}
}

Comments

6 pages, 8 figures, To bu published on J. Phys.: Condens. Matter