paper

Metallic State in Cubic FeGe beyond its Quantum Phase Transition

arXiv:cond-mat/0606493 · doi:10.1103/PhysRevLett.98.047204

Abstract

We report on results of electrical resistivity and structural investigations on the cubic modification of FeGe under high pressure. The long-wavelength helical order ( K) is suppressed at a critical pressure GPa. An anomaly in the resistivity data at and strong deviations from a Fermi-liquid behavior in a wide pressure range above suggest that the suppression of disagrees with the standard notion of a quantum critical phase transition. The metallic ground state persisting at high pressure can be described by band-structure calculations if structural disorder due to zero-point motion is included. Discontinuous changes in the pressure dependence of the shortest Fe-Ge interatomic distance occurring close to the phase line could be interpreted as a symmetry-conserving transition of first order.

4 pages, 4 figures

Metallic State in Cubic FeGe beyond its Quantum Phase Transition · wovepaper