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Quasiprobabilistic state-overlap estimator for NISQ devices

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arxiv 2112.11618 v1 pith:TFGFTLH7 submitted 2021-12-22 quant-ph

Quasiprobabilistic state-overlap estimator for NISQ devices

classification quant-ph
keywords quantumstatesoverlapquasiprobabilisticbestdevelopmentdevicesestimator
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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As quantum technologies mature, the development of tools for benchmarking their ability to prepare and manipulate complex quantum states becomes increasingly necessary. A key concept, the state overlap between two quantum states, offers a natural tool to verify and cross-validate quantum simulators and quantum computers. Recent progress in controlling and measuring large quantum systems has motivated the development of state overlap estimators of varying efficiency and experimental complexity. Here, we demonstrate a practical approach for measuring the overlap between quantum states based on a factorable quasiprobabilistic representation of the states, and compare it with methods based on randomised measurements. Assuming realistic noisy intermediate scale quantum (NISQ) devices limitations, our quasiprobabilistic method outperforms the best circuits designed for state-overlap estimation for n-qubit states, with n > 2. For n < 7, our technique outperforms also the currently best direct estimator based on randomised local measurements, thus establishing a niche of optimality.

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