Robustness of critical U(1) spin liquids and emergent symmetries in tensor networks

Author:

Dreyer Henrik12,Vanderstraeten Laurens3,Chen Ji-Yao12ORCID,Verresen Ruben4,Schuch Norbert1255ORCID

Affiliation:

1. Max-Planck-Institute of Quantum Optics

2. Munich Center for Quantum Science and Technology

3. Ghent University

4. Harvard University

5. University of Vienna

Abstract

We study the response of critical resonating valence bond (RVB) spin liquids to doping with longer-range singlets, and more generally of U(1)-symmetric tensor networks to nonsymmetric perturbations. Using a field theory description, we find that in the RVB, doping constitutes a relevant perturbation that immediately opens up a gap, contrary to previous observations. Our analysis predicts a very large correlation length even at significant doping, which we verify using high-accuracy numerical simulations. This emphasizes the need for careful analysis, but it also justifies the use of such states as a variational ansatz for critical systems. Finally, we give an example of a projected entangled pair state where nonsymmetric perturbations do not open up a gap and the U(1) symmetry reemerges. Published by the American Physical Society 2024

Funder

Horizon 2020

Deutsche Forschungsgemeinschaft

Fonds Wetenschappelijk Onderzoek

Simons Foundation

Austrian Science Fund

Publisher

American Physical Society (APS)

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