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Quantum error mitigation in quantum annealing

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arxiv 2311.01306 v1 pith:ZI6LPESR submitted 2023-11-02 quant-ph

classification quant-ph
keywords quantumannealingcoherenterrormitigationenergy-timeextrapolationnoise
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Quantum Error Mitigation (QEM) presents a promising near-term approach to reduce error when estimating expectation values in quantum computing. Here, we introduce QEM techniques tailored for quantum annealing, using Zero-Noise Extrapolation (ZNE). We implement ZNE through zero-temperature extrapolation as well as energy-time rescaling. We conduct experimental investigations into the quantum critical dynamics of a transverse-field Ising spin chain, demonstrating the successful mitigation of thermal noise through both of these techniques. Moreover, we show that energy-time rescaling effectively mitigates control errors in the coherent regime where the effect of thermal noise is minimal. Our ZNE results agree with exact calculations of the coherent evolution over a range of annealing times that exceeds the coherent annealing range by almost an order of magnitude.

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  1. Frustration-Enhanced Quantum Annealing Correction Models with Additional Inter-replica Interactions

    cond-mat.stat-mech 2025-09 conditional novelty 6.0 of 10

    On the frustrated ring benchmark, antiferromagnetic inter-replica coupling in the periodic-boundary stacked model boosts success probability at short annealing times because many low-lying excited states decode to the...

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