Probing Defects with Quantum Simulator Snapshots

Fuente: arXiv
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Auteurs principaux: Sarma, Abhijat, Myerson-Jain, Nayan, Liu, Yue, Manoj, Nandagopal, Alicea, Jason, Melko, Roger G., Xu, Cenke
Format: Preprint
Publié: 2025
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author Sarma, Abhijat
Myerson-Jain, Nayan
Liu, Yue
Manoj, Nandagopal
Alicea, Jason
Melko, Roger G.
Xu, Cenke
author_facet Sarma, Abhijat
Myerson-Jain, Nayan
Liu, Yue
Manoj, Nandagopal
Alicea, Jason
Melko, Roger G.
Xu, Cenke
contents Snapshots, i.e. projective measurements of local degrees of freedom, are the most standard data taken in experiments on quantum simulators. Snapshots are usually used to probe local physics. In this work we propose a simple protocol to experimentally probe physics of defects with these snapshots. Our protocol relies only on snapshots from the bulk system, without introducing the defect explicitly; as such, the physics of different kinds of defects can be probed using the same dataset. In particular, we demonstrate that with snapshots of local spin configurations of, for example, the $1d$ Rydberg atom realization of the quantum Ising criticality, we can (1) extract the ``defect entropy", and (2) access the continuous line of fixed points of effective defect conformal field theory, which was recently discussed in the context of the ``weak-measurement altered criticality".
format Preprint
id arxiv_https___arxiv_org_abs_2507_05379
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Probing Defects with Quantum Simulator Snapshots
Sarma, Abhijat
Myerson-Jain, Nayan
Liu, Yue
Manoj, Nandagopal
Alicea, Jason
Melko, Roger G.
Xu, Cenke
Quantum Physics
Strongly Correlated Electrons
Snapshots, i.e. projective measurements of local degrees of freedom, are the most standard data taken in experiments on quantum simulators. Snapshots are usually used to probe local physics. In this work we propose a simple protocol to experimentally probe physics of defects with these snapshots. Our protocol relies only on snapshots from the bulk system, without introducing the defect explicitly; as such, the physics of different kinds of defects can be probed using the same dataset. In particular, we demonstrate that with snapshots of local spin configurations of, for example, the $1d$ Rydberg atom realization of the quantum Ising criticality, we can (1) extract the ``defect entropy", and (2) access the continuous line of fixed points of effective defect conformal field theory, which was recently discussed in the context of the ``weak-measurement altered criticality".
title Probing Defects with Quantum Simulator Snapshots
topic Quantum Physics
Strongly Correlated Electrons
url https://arxiv.org/abs/2507.05379