More on symmetry resolved operator entanglement
Abstract
The `operator entanglement' of a quantum operator is a useful indicator of its complexity, and, in one-dimension, of its approximability by matrix product operators. Here we focus on spin chains with a global conservation law, and on operators with a well-defined charge, for which it is possible to resolve the operator entanglement of according to the symmetry. We employ the notion of symmetry resolved operator entanglement (SROE) introduced in [PRX Quantum 4, 010318 (2023)] and extend the results of the latter paper in several directions. Using a combination of conformal field theory and of exact analytical and numerical calculations in critical free fermionic chains, we study the SROE of the thermal density matrix and of charged local operators evolving in Heisenberg picture . Our main results are: i) the SROE of obeys the operator area law; ii) for free fermions, local operators in Heisenberg picture can have a SROE that grows logarithmically in time or saturates to a constant value; iii) there is equipartition of the entanglement among all the charge sectors except for a pair of fermionic creation and annihilation operators.
Cite
@article{arxiv.2309.04032,
title = {More on symmetry resolved operator entanglement},
author = {Sara Murciano and Jérôme Dubail and Pasquale Calabrese},
journal= {arXiv preprint arXiv:2309.04032},
year = {2024}
}
Comments
26 pages, 6 figures