发表机构
Center for Theoretical Physics - a Leinweber Institute, Massachusetts Institute of Technology; Department of Physics, Yale University; School of Physics, Peking University(麻省理工学院理论物理中心-莱因韦伯研究所; 耶鲁大学物理系; 北京大学物理学院)
机构由 AI 辅助整理,请以论文原文为准。AI 中文总结
该研究通过重求和弱耦合微扰对数和结合强耦合数据,构建了EEC背对背平台高度从弱到强耦合的插值,并采用人机协同智能体工作流。
AI 中文摘要
能量-能量关联函数(EEC)的背对背极限呈现出一个有限的平台,捕捉了从弱耦合下的微扰软-共线辐射到强耦合下的弦动力学的演化过程。在弱耦合下,我们在$\mathcal N=4$超对称杨-米尔斯理论中,通过N$^3$LL精度重求和了其领头阶和次领头阶幂次对数,包括非平面贡献。结合这一弱耦合端点与自举及强耦合数据,我们构建了平台高度从弱耦合到强耦合的插值。该计算采用了人机协同的智能体工作流程。
英文摘要
The back-to-back limit of the energy-energy correlator (EEC) exhibits a finite plateau, capturing the evolution from perturbative soft-collinear radiation at weak coupling to string dynamics at strong coupling. At weak coupling, we resum its leading and next-to-leading-power logarithms through N$^3$LL in $\mathcal N=4$ SYM, including non-planar contributions. Combining this weak-coupling endpoint with bootstrap and strong-coupling data, we construct an interpolation for the plateau height from weak to strong coupling. The calculation uses a human-in-the-loop agentic workflow.
Comments12 pages, 4 figures