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Universal behavior of $\rm CePd_{1-x}Rh_x$ Ferromagnet at Quantum Critical Point

Strongly Correlated Electrons 2007-07-20 v1

Abstract

The heavy-fermion metal CePd1xRhx\rm CePd_{1-x}Rh_x can be tuned from ferromagnetism at x=0x=0 to non-magnetic state at some critical concentration xcx_c. The non-Fermi liquid behavior (NFL) at xxcx\simeq x_c is recognized by power low dependence of the specific heat C(T)C(T) given by the electronic contribution, magnetic susceptibility χ(T)\chi(T) and volume expansion coefficient α(T)\alpha(T) at low temperatures: C/Tχ(T)α(T)/T1/TC/T\propto\chi(T)\propto\alpha(T)/T\propto1/\sqrt{T}. We also demonstrate that the behavior of normalized effective mass MNM^*_N observed in CePd1xRhx\rm CePd_{1-x}Rh_x at x0.8x\simeq 0.8 agrees with that of MNM^*_N observed in paramagnetic CeRu2Si2\rm CeRu_2Si_2 and conclude that these alloys exhibit the universal NFL thermodynamic behavior at their quantum critical points. We show that the NFL behavior of CePd1xRhx\rm CePd_{1-x}Rh_x can be accounted for within frameworks of quasiparticle picture and fermion condensation quantum phase transition, while this alloy exhibits a universal thermodynamic NFL behavior which is independent of the characteristic features of the given alloy such as its lattice structure, magnetic ground state, dimension etc.

Keywords

Cite

@article{arxiv.cond-mat/0703474,
  title  = {Universal behavior of $\rm CePd_{1-x}Rh_x$ Ferromagnet at Quantum Critical Point},
  author = {V. R. Shaginyan and K. G. Popov and S. A. Artamonov},
  journal= {arXiv preprint arXiv:cond-mat/0703474},
  year   = {2007}
}

Comments

5 pages, 3 figures