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Searching for QCD instantons at hadron colliders

机译:在Holdron林门上寻找QCD Instantons

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QCD instantons are arguably the best motivated yet unobserved nonperturbative effects predicted by the Standard Model. A discovery and detailed study of instanton-generated processes at colliders would provide a new window into the phenomenological exploration of QCD and a vastly improved fundamental understanding of its nonperturbative dynamics. Building on the optical theorem, we numerically calculate the total instanton cross section from the elastic scattering amplitude, also including quantum effects arising from resummed perturbative exchanges between hard gluons in the initial state, thereby improving in accuracy on previous results. Although QCD instanton processes are predicted to be produced with a large scattering cross section at small center-of-mass partonic energies, discovering them at hadron colliders is a challenging task that requires dedicated search strategies. We evaluate the sensitivity of high-luminosity LHC runs, as well as low-luminosity LHC and Tevatron runs. We find that LHC low-luminosity runs in particular, which do not suffer from large pileup and trigger thresholds, show a very good sensitivity for discovering QCD instanton-generated processes.
机译:QCD Instantons可以说是标准模型预测的最佳动机尚未观察的非兴奋效果。对陆战生机的即时生成的进程的发现和详细研究将为QCD的现象学探索提供新的窗口,并且对其非培训动态的基本理解极大地改善了。在光学定理上建立,我们计算来自弹性散射幅度的总工程横截面,还包括从初始状态下的硬泡之间的扰动交换中断的量子效应,从而提高了先前结果的准确性。虽然预计QCD算子过程,但在小群体局部能量的大型散射横截面中,在HOTRON煤机中发现它们是一个具有挑战性的任务,需要专用搜索策略。我们评估高亮度LHC运行的敏感性,以及低光泽度LHC和Tevatron运行。我们发现LHC低亮度尤其延伸,这不会遭受大堆积和触发阈值,显示出对发现QCD型号产生的过程的非常好的灵敏度。

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