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Doping-induced perturbation and percolation in the two-dimensional Anderson lattice

Published 11 Oct 2016 in cond-mat.str-el | (1610.03160v2)

Abstract: We examine the doping effects in the two-dimensional periodic Anderson model using the determinant Quantum Monte Carlo (DQMC) method. We observe bound states around the Kondo hole site and find that the heavy electron states are destroyed at the nearest-neighbor sites. Our results show no clear sign of hybridization oscillation predicted in previous mean-field calculations. We further study the electron transport with increasing doping and as a function of temperature and obtain a critical doping at x_c~0.6 that marks a transition from the Kondo insulator regime to the single-ion Kondo regime. The value of x_c is in good agreement with the predicted threshold for the site percolation. Our results confirm the percolative nature of the insulator-metal transition observed in doped Kondo insulators.

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