Back to Search Start Over

Evidence for a Kondo destroying quantum critical point in YbRh2Si2

Authors :
Steglich, Frank
Pfau, Heike
Lausberg, Stefan
Sun, Peijie
Stockert, Ulrike
Brando, Manuel
Friedemann, Sven
Krellner, Cornelius
Geibel, Christoph
Wirth, Steffen
Kirchner, Stefan
Abrahams, Elihu
Si, Qimiao
Publication Year :
2013

Abstract

The heavy-fermion metal YbRh$_{2}$Si$_{2}$ is a weak antiferromagnet below $T_{N} = 0.07$ K. Application of a low magnetic field $B_{c} = 0.06$ T ($\perp c$) is sufficient to continuously suppress the antiferromagnetic (AF) order. Below $T \approx 10$ K, the Sommerfeld coefficient of the electronic specific heat $\gamma(T)$ exhibits a logarithmic divergence. At $T < 0.3$ K, $\gamma(T) \sim T^{-\epsilon}$ ($\epsilon: 0.3 - 0.4$), while the electrical resistivity $\rho(T) = \rho_{0} + aT$ ($\rho_{0}$: residual resistivity). Upon extrapolating finite-$T$ data of transport and thermodynamic quantities to $T = 0$, one observes (i) a vanishing of the "Fermi surface crossover" scale $T^{*}(B)$, (ii) an abrupt jump of the initial Hall coefficient $R_{H}(B)$ and (iii) a violation of the Wiedemann Franz law at $B = B_{c}$, the field-induced quantum critical point (QCP). These observations are interpreted as evidence of a critical destruction of the heavy quasiparticles, i.e., propagating Kondo singlets, at the QCP of this material.<br />Comment: 20 pages, 8 figures, SCES 2013

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1309.7260
Document Type :
Working Paper
Full Text :
https://doi.org/10.7566/JPSJ.83.061001