arXiv · 1607.06054
Impurities near an Antiferromagnetic-Singlet Quantum Critical Point
Abstract
Heavy fermion systems, and other strongly correlated electron materials, often exhibit a competition between antiferromagnetic (AF) and singlet ground states. Using exact Quantum Monte Carlo (QMC) simulations, we examine the effect of impurities in the vicinity of such AF- singlet quantum critical points, through an appropriately defined impurity susceptibility, $\chi_{imp}$. Our key finding is a connection, within a single calculational framework, between AF domains induced on the singlet side of the transition, and the behavior of the nuclear magnetic resonance (NMR) relaxation rate $1/T_1$. We show that local NMR measurements provide a diagnostic for the location of the QCP which agrees remarkably well with the vanishing of the AF order parameter and large values of $\chi_{imp}$. We connect our results with experiments on Cd-doped CeCoIn$_5$.
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T. Mendes, N. Costa, G. Batrouni, N. Curro, R. R. dos Santos, T. Paiva, R. T. Scalettar. 2016-07-20. Impurities near an Antiferromagnetic-Singlet Quantum Critical Point. https://doi.org/10.1103/physrevb.95.054419
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