纠缠熵的 QCD 演化。

Martin Hentschinski, Dmitri E Kharzeev, Krzysztof Kutak, Zhoudunming Tu
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引用次数: 0

摘要

纠缠熵已成为探测非微扰量子色动力学(QCD)现象(如质子的色约束)的一种新工具。尽管最近的研究证明了它在描述深非弹性散射中强子产生方面的重要能力,但纠缠熵的 QCD 演变仍未得到探索。在这项工作中,我们研究了质子内部随速度变化的纠缠熵及其与终态强子的联系,旨在阐明其 QCD 演变。我们的分析表明,从 QCD 演化方程得到的冯-诺依曼熵的快速性依赖性与强子熵的相应实验数据之间存在很强的一致性。这些发现为最大纠缠态的出现提供了令人信服的证据,为质子的非微扰结构提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
QCD evolution of entanglement entropy.

Entanglement entropy has emerged as a novel tool for probing nonperturbative quantum chromodynamics (QCD) phenomena, such as color confinement in protons. While recent studies have demonstrated its significant capability in describing hadron production in deep inelastic scatterings, the QCD evolution of entanglement entropy remains unexplored. In this work, we investigate the differential rapidity-dependent entanglement entropy within the proton and its connection to final-state hadrons, aiming to elucidate its QCD evolution. Our analysis reveals a strong agreement between the rapidity dependence of von Neumann entropy, obtained from QCD evolution equations, and the corresponding experimental data on hadron entropy. These findings provide compelling evidence for the emergence of a maximally entangled state, offering new insights into the nonperturbative structure of protons.

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