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    Simulating work extraction in a dinuclear quantum battery using a variational quantum algorithm

    Lucas Q. Galvão1,2,*, Ana Clara das Neves3,†, Maron F. Anka2,‡, and Clebson Cruz4,§

    • 1Latin American Quantum Computing Center, SENAI CIMATEC, Salvador, Brazil
    • 2QuIIN, Quantum Industrial Innovation, EMBRAPII CIMATEC Competence Center in Quantum Technologies, SENAI CIMATEC, Av. Orlando Gomes 1845, Salvador, Bahia 41650-010, Brazil
    • 3Universidade Federal do ABC, Av. dos Estados, 5001, Bangú, Santo André, São Paolo 09280-560, Brazil
    • 4Centro de Ciências Exatas e das Tecnologias, Universidade Federal do Oeste da Bahia, Campus Reitor Edgard Santos, Rua Bertioga, 892, Morada Nobre I, Barreiras, Bahia 47810-059, Brazil

    • *Contact author: lqgalvao3@gmail.com
    • †Contact author: ana.neves@ufabc.edu.br
    • ‡Contact author: maron.anka@fbest.org.br
    • §Contact author: clebson.cruz@ufob.edu.br

    Phys. Rev. E 111, 064119 – Published 16 June, 2025

    DOI: https://doi.org/10.1103/6bm4-8ckl

    Abstract

    Understanding the thermodynamic properties of quantum systems is essential for developing energy-efficient quantum technologies. In this regard, this work explores the application of quantum computational methods to study the quantum properties and work extraction processes in a dinuclear quantum battery model. Our results demonstrate that variational quantum algorithms can reproduce key trends in experimental data, making it possible to analyze the effectiveness of the presented protocol in noisy environments and providing insights into the feasibility of quantum batteries in near-term devices. We have shown that the presence of a noisy environment hinders the accuracy of the evaluation of the amount of energy stored in the system. Additionally, we analyze the work extraction precision, revealing that although the system can store energy at room temperature, the protocol is highly precise only at low temperatures, and its accuracy at ambient conditions remains limited, compromising its usability.

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