Abstract
AbstractWe present a toolbox to probe quantum many-body states implemented on Rydberg-atoms quantum hardware via randomized measurements. We illustrate the efficacy of this measurement toolbox in the context of probing entanglement, via the estimation of the purity, and of verifying a ground-state preparation using measurements of the Hamiltonian variance. To achieve this goal, we develop and discuss in detail a protocol to realize independent, local unitary rotations. We benchmark the protocol by investigating the ground state of the one-dimensional Su–Schrieffer–Heeger model, recently realized on a chain of Rydberg atom, and the state resulting after a sudden quench in a staggeredXYchain. We probe the robustness of our toolbox by taking into account experimental imperfections, such as pulse fluctuations and measurement errors.
Funder
Horizon 2020 Framework Programme
HORIZON EUROPE European Innovation Council
Deutsche Akademie der Naturforscher Leopoldina - Nationale Akademie der Wissenschaften
Agence Nationale de la Recherche
Walter Burke Institute for Theoretical Physics
Università degli Studi di Padova
Austrian Science Fund
QuantERA
NextGenerationEU
Subject
General Physics and Astronomy
Cited by
7 articles.
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