Probing Hilbert space fragmentation using controlled dephasing

Fuente: arXiv
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Autores principales: Vuina, Dominik, Schäfer, Robin, Long, David M., Chandran, Anushya
Formato: Preprint
Publicado: 2025
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author Vuina, Dominik
Schäfer, Robin
Long, David M.
Chandran, Anushya
author_facet Vuina, Dominik
Schäfer, Robin
Long, David M.
Chandran, Anushya
contents Dynamical constraints in many-body quantum systems can lead to Hilbert space fragmentation, wherein the system's evolution is restricted to small subspaces of Hilbert space called Krylov sectors. However, unitary dynamics within individual sectors may also be slow or non-ergodic, which limits experiments' ability to measure the properties of the entire sector. We show that additional controlled dephasing reliably mixes the system within a single Krylov sector, and that simple observables can differentiate these sectors. For example, in the strongly interacting XXZ chain with dephasing, the spin imbalance between even and odd sublattices distinguishes sectors. For appropriate choices of initial states, the imbalance begins positive, decays to a negative minimum value at intermediate times, and eventually returns to zero. The minimum reflects the average imbalance of the Krylov sector associated to the initial state. We compute the size of the minimum analytically in the limit of strong interactions, and validate our results with simulations at experimentally relevant interaction strengths.
format Preprint
id arxiv_https___arxiv_org_abs_2506_13856
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Probing Hilbert space fragmentation using controlled dephasing
Vuina, Dominik
Schäfer, Robin
Long, David M.
Chandran, Anushya
Quantum Physics
Quantum Gases
Statistical Mechanics
Strongly Correlated Electrons
Dynamical constraints in many-body quantum systems can lead to Hilbert space fragmentation, wherein the system's evolution is restricted to small subspaces of Hilbert space called Krylov sectors. However, unitary dynamics within individual sectors may also be slow or non-ergodic, which limits experiments' ability to measure the properties of the entire sector. We show that additional controlled dephasing reliably mixes the system within a single Krylov sector, and that simple observables can differentiate these sectors. For example, in the strongly interacting XXZ chain with dephasing, the spin imbalance between even and odd sublattices distinguishes sectors. For appropriate choices of initial states, the imbalance begins positive, decays to a negative minimum value at intermediate times, and eventually returns to zero. The minimum reflects the average imbalance of the Krylov sector associated to the initial state. We compute the size of the minimum analytically in the limit of strong interactions, and validate our results with simulations at experimentally relevant interaction strengths.
title Probing Hilbert space fragmentation using controlled dephasing
topic Quantum Physics
Quantum Gases
Statistical Mechanics
Strongly Correlated Electrons
url https://arxiv.org/abs/2506.13856