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A randomized measurement toolbox for an interacting Rydberg-atom quantum simulator

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arxiv 2112.11046 v2 pith:DLPPEQVN submitted 2021-12-21 quant-ph cond-mat.quant-gascond-mat.stat-mechphysics.atom-phphysics.comp-ph

classification quant-phcond-mat.quant-gascond-mat.stat-mechphysics.atom-phphysics.comp-ph
keywords toolboxmeasurementquantumchainmeasurementsprobeprotocolrandomized
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We 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 SSH model, recently realized on a chain of Rydberg atom, and the state resulting after a sudden quench in a staggered XY chain. We probe the robustness of our toolbox by taking into account experimental imperfections, such as pulse fluctuations and measurement errors.

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