Quantum Impurity Entanglement
Erik S. S{\o}rensen, Ming-Shyang Chang, Nicolas Laflorencie, Ian, Affleck

TL;DR
This paper investigates quantum impurity entanglement in J_1-J_2 spin chains using analytic and numerical methods, revealing universal scaling behaviors and detailed entanglement structures across different phases.
Contribution
It introduces a comprehensive analysis of impurity entanglement, including universal scaling in the gapless phase and a variational approach in the dimerized phase, with exact results at the Majumdar-Ghosh point.
Findings
Impurity entanglement exhibits universal scaling with the Kondo screening length.
Analytic results at the critical point describe entanglement at zero and finite temperature.
The thin soliton ansatz accurately captures entanglement in the dimerized phase.
Abstract
Entanglement in J_1-J_2, S=1/2 quantum spin chains with an impurity is studied using analytic methods as well as large scale numerical density matrix renormalization group methods. The entanglement is investigated in terms of the von Neumann entropy, S=-Tr rho_A log rho_A, for a sub-system A of size r of the chain. The impurity contribution to the uniform part of the entanglement entropy, S_{imp}, is defined and analyzed in detail in both the gapless, J_2 <= J_2^c, as well as the dimerized phase, J_2>J_2^c, of the model. This quantum impurity model is in the universality class of the single channel Kondo model and it is shown that in a quite universal way the presence of the impurity in the gapless phase, J_2 <= J_2^c, gives rise to a large length scale, xi_K, associated with the screening of the impurity, the size of the Kondo screening cloud. The universality of Kondo physics then…
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