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Classical simulators as quantum error mitigators via circuit cutting

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arxiv 2212.07335 v1 pith:RMYLWPU2 submitted 2022-12-14 quant-ph

Classical simulators as quantum error mitigators via circuit cutting

classification quant-ph
keywords circuiterrormitigationquantumcuttingframeworkqubitacheiving
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We introduce an error mitigation framework that mitigates errors in a quantum circuit using circuit cutting. Our framework can be implemented in polynomial time for a wide variety of quantum circuits. Our technique involves cutting the circuit in such a way that we run the circuit that needs to be executed on the quantum hardware whereas the error mitigation circuit is run on a simulator. We perform error mitigation qubit by qubit and then provide a way to combine the different probabilities from each of the individual qubit error mitigation runs such that the full circuit is error mitigated. We apply our framework to the VQE hardware-efficient ansatz acheiving estimated ground state energies very close to the noise-free simulation results.

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Cited by 1 Pith paper

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    quant-ph 2025-11 conditional novelty 6.0

    An open-source simulator computes Born-rule probabilities for matchgate-plus-controlled-phase chemistry circuits and uses them to improve sample-based quantum diagonalization.