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    Existence of a robust optimal control process for efficient measurements in a two-qubit system

    Ricardo Rodriguez*

    Nam Nguyen

    Elizabeth Behrman

    Andy C. Y. Li

    James Steck

    • Department of Natural Sciences and Mathematics, McPherson College, McPherson, Kansas, USA

    • *Contact author: rodrig.ricardo@gmail.com

    Phys. Rev. A 113, 042618 – Published 15 April, 2026

    DOI: https://doi.org/10.1103/116x-1vfv

    Abstract

    The verification of quantum entanglement is essential for quality control in quantum communication. In this work we propose an efficient protocol to directly verify the two-qubit entanglement of a known target state through a single-expectation-value measurement. Our method provides exact entanglement quantification using the concurrence measure without performing quantum state tomography. We prove the existence of a unitary transformation that drives a known initial state of a two-qubit system to a designated final state, where the trace over a chosen observable directly yields the concurrence of the initial state. Furthermore, we implement an optimal control process of that transformation and demonstrate its effectiveness through numerical simulations. We also show that this process is robust to environmental noise. Our approach offers advantages in directly verifying entanglement with low circuit depth, making it suitable for industrial-scale quality control of entanglement generation. Our results presented here provide mathematical justification for our earlier computational experiments.

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