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Research PaperResearchia:202607.23018

Efficiently Simulable Pauli Correlation Encoding

Daniele Lizzio Bosco

Abstract

Pauli Correlation Encoding (PCE) is a heuristic framework for binary optimisation that encodes classical variables into many-body Pauli observables. While PCE requires fewer qubits than other approaches, it relies on estimating a large number of Pauli expectation values whose signs determine the variables' values, which can incur substantial measurement overhead. Here, we introduce efficiently simulable PCE, a class of dequantised PCE realisations where all expectation values needed can be compu...

Submitted: July 23, 2026Subjects: Quantum Physics; Quantum Computing

Description / Details

Pauli Correlation Encoding (PCE) is a heuristic framework for binary optimisation that encodes classical variables into many-body Pauli observables. While PCE requires fewer qubits than other approaches, it relies on estimating a large number of Pauli expectation values whose signs determine the variables' values, which can incur substantial measurement overhead. Here, we introduce efficiently simulable PCE, a class of dequantised PCE realisations where all expectation values needed can be computed efficiently classically. We instantiate this idea using free-fermionic evolutions, realised by matchgate circuits, and Instantaneous Quantum Polynomial (IQP) circuits. On MaxCut, Maximum Independent Set, Multi-Dimensional Knapsack, and Max3SAT benchmarks, these methods produce high-quality solutions across problem sizes ranging from tens to thousands of variables. Our results show that PCE is naturally understood as a correlation-based optimisation framework with both quantum and classically simulable realisations. This yields a dequantised baseline for evaluating future quantum PCE implementations.


Source: arXiv:2607.20409v1 - http://arxiv.org/abs/2607.20409v1 PDF: https://arxiv.org/pdf/2607.20409v1 Original Link: http://arxiv.org/abs/2607.20409v1

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Date:
Jul 23, 2026
Topic:
Quantum Computing
Area:
Quantum Physics
Comments:
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