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An approximate description of quantum states

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arxiv 1910.10543 v2 pith:V45GWXZQ submitted 2019-10-23 quant-ph

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keywords approximatedescriptionstateexpectationobservablesqubitindependentmethod
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abstract

We introduce an approximate description of an $N$-qubit state, which contains sufficient information to estimate the expectation value of any observable with precision independent of $N$. We show, in fact, that the error in the estimation of the observables' expectation values decreases as the inverse of the square root of the number of the system's identical preparations and increases, at most, linearly in a suitably defined, $N$-independent, seminorm of the observables. Building the approximate description of the $N$-qubit state only requires repetitions of single-qubit rotations followed by single-qubit measurements and can be considered for implementation on today's Noisy Intermediate-Scale Quantum (NISQ) computers. The access to the expectation values of all observables for a given state leads to an efficient variational method for the determination of the minimum eigenvalue of an observable. The method represents one example of the practical significance of the approximate description of the $N$-qubit state. We conclude by briefly discussing extensions to generative modelling and with fermionic operators.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Contractive Unitary and Classical Shadow Tomography

    quant-ph 2024-11 conditional novelty 8.0 of 10

    Using an all-to-all product of ZZ gates as a deterministic global unitary, classical shadow tomography achieves ~1.8^k sample complexity for dense k-local Pauli strings.

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    quant-ph 2025-11 conditional novelty 7.0 of 10

    Using the Z2 lattice-gauge-theory/Ising duality, symmetry-aware classical shadow protocols estimate gauge-invariant observables with exponentially fewer samples than symmetry-blind protocols, at the cost of deeper circuits.

  3. Efficient Quantum Simulation of QCD Jets on the Light Front

    hep-ph 2024-11 conditional novelty 6.0 of 10

    A direct second-quantized qubit encoding of the light-front QCD Hamiltonian is used to classically emulate in-medium jet evolution with up to three-particle Fock states.

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