Healing of defects in random antiferromagnetic spin chains

ORAL

Abstract

We study the effects of a weakened link in random antiferromagnetic spin chains. We show that healing occurs, and that homogeneity is restored at low energy, in a way that is qualitatively similar to the fate of impurities in clean ferromagnetic spin chains, or in Luttinger liquids with attractive interactions. Healing in the random case occurs even without interactions, and is characteristic of the random singlet phase. Using real space renormalization group and exact diagonalization methods, we characterize this universal healing crossover by studying the entanglement across the weak link. We identify a crossover healing length L* that separates a regime where the system is cut in half by the weak link from a fixed point where the spin chain is healed. Our results open the way to the study of impurity physics in disordered spin chains.

Presenters

  • Arash Roshani

    Physics and Astronomy, Univ of Southern California

Authors

  • Romain Vasseur

    Physics, UMass Amherst, UMass Amherst, Univ of Massachusetts, Amherst, Physics, University of Massachusetts, University of Massachusetts

  • Arash Roshani

    Physics and Astronomy, Univ of Southern California

  • Stephan Haas

    Department of Physics and Astronomy, Univ of Southern California, Department of Physics & Astronomy, University of Southern California, Physics, Univ of Southern California, Univ of Southern California, Physics and Astronomy, Univ of Southern California, Physics, University of Southern Callifornia

  • Hubert Saleur

    Physics and Astronomy, Univ of Southern California, Univ of Southern California