Stabilizer disentangling of conformal field theories

Fuente: arXiv
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Autori principali: Frau, Martina, Tarabunga, Poetri Sonya, Collura, Mario, Tirrito, Emanuele, Dalmonte, Marcello
Natura: Preprint
Pubblicazione: 2024
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author Frau, Martina
Tarabunga, Poetri Sonya
Collura, Mario
Tirrito, Emanuele
Dalmonte, Marcello
author_facet Frau, Martina
Tarabunga, Poetri Sonya
Collura, Mario
Tirrito, Emanuele
Dalmonte, Marcello
contents Understanding how entanglement can be reduced through simple operations is crucial for both classical and quantum algorithms. We investigate the entanglement properties of lattice models hosting conformal field theories cooled via local Clifford operations, a procedure we refer to as stabilizer disentangling. We uncover two distinct regimes: a constant gain regime, where disentangling is volume-independent, and a log-gain regime, where disentanglement increases with volume, characterized by a reduced effective central charge. In both cases, disentangling efficiency correlates with the target state magic, with larger magic leading to more effective cooling. The dichotomy between the two cases stems from mutual stabilizer Renyi entropy, which influences the entanglement cooling process. We provide an analytical understanding of such effect in the context of cluster Ising models, that feature disentangling global Clifford operations. Our findings indicate that matrix product states possess subclasses based on the relationship between entanglement and magic, and clarifying the potential of new classes of variational states embedding Clifford dynamics within matrix product states.
format Preprint
id arxiv_https___arxiv_org_abs_2411_11720
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Stabilizer disentangling of conformal field theories
Frau, Martina
Tarabunga, Poetri Sonya
Collura, Mario
Tirrito, Emanuele
Dalmonte, Marcello
Quantum Physics
Strongly Correlated Electrons
Understanding how entanglement can be reduced through simple operations is crucial for both classical and quantum algorithms. We investigate the entanglement properties of lattice models hosting conformal field theories cooled via local Clifford operations, a procedure we refer to as stabilizer disentangling. We uncover two distinct regimes: a constant gain regime, where disentangling is volume-independent, and a log-gain regime, where disentanglement increases with volume, characterized by a reduced effective central charge. In both cases, disentangling efficiency correlates with the target state magic, with larger magic leading to more effective cooling. The dichotomy between the two cases stems from mutual stabilizer Renyi entropy, which influences the entanglement cooling process. We provide an analytical understanding of such effect in the context of cluster Ising models, that feature disentangling global Clifford operations. Our findings indicate that matrix product states possess subclasses based on the relationship between entanglement and magic, and clarifying the potential of new classes of variational states embedding Clifford dynamics within matrix product states.
title Stabilizer disentangling of conformal field theories
topic Quantum Physics
Strongly Correlated Electrons
url https://arxiv.org/abs/2411.11720