论文标题

QCD QCD QCD耦合精确确定的过去,现在和未来

Past, present, and future of precision determinations of the QCD coupling from lattice QCD

论文作者

Brida, Mattia Dalla

论文摘要

在晶格QCD中,非扰动依赖性依赖性的重新归一化问题在许多相关的现象学应用中无处不在。他们需要非扰动地求解QCD参数和感兴趣的矩阵元素的重新归一化组方程,以便将其低能量时的非扰动确定与现象学所需的高能对应物联系起来。然而,桥接QCD的耐药性和扰动方案之间的巨大能量分离是众所周知的一项艰巨任务。在此贡献中,我们着重于QCD耦合的情况。我们严格解决了最先进的晶格确定要大大改善所面临的共同挑战。此外,我们回顾了一种新的策略,该策略是最近提出的,以解决这个非扰动重新归化问题并讨论其对未来精确确定的影响。新想法利用了重型夸克的脱钩,以匹配$ n _ {\ rm f} $ - 味道QCD和纯Yang-Mills理论。通过这种匹配,QCD中耦合的非扰动运行的计算可以转移到计算上更容易解决纯正理论。我们将为确定$ n _ {\ rm f} = 3 $ -flavor QCD的$λ$ - 参数提供结果,其中已应用并证明成功。结果表明,这些技术有可能从晶格中解锁QCD耦合的前所未有的精度确定。此外,这些想法是相当笼统的,可以被认为可以解决其他非扰动重新归一化问题。

Non-perturbative scale-dependent renormalization problems are ubiquitous in lattice QCD as they enter many relevant phenomenological applications. They require solving non-perturbatively the renormalization group equations for the QCD parameters and matrix elements of interest in order to relate their non-perturbative determinations at low energy to their high-energy counterparts needed for phenomenology. Bridging the large energy separation between the hadronic and perturbative regimes of QCD, however, is a notoriously difficult task. In this contribution we focus on the case of the QCD coupling. We critically address the common challenges that state-of-the-art lattice determinations have to face in order to be significantly improved. In addition, we review a novel strategy that has been recently put forward in order to solve this non-perturbative renormalization problem and discuss its implications for future precision determinations. The new ideas exploit the decoupling of heavy quarks to match $N_{\rm f}$-flavor QCD and the pure Yang-Mills theory. Through this matching the computation of the non-perturbative running of the coupling in QCD can be shifted to the computationally much easier to solve pure-gauge theory. We shall present results for the determination of the $Λ$-parameter of $N_{\rm f}=3$-flavor QCD where this strategy has been applied and proven successful. The results demonstrate that these techniques have the potential to unlock unprecedented precision determinations of the QCD coupling from the lattice. The ideas are moreover quite general and can be considered to solve other non-perturbative renormalization problems.

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