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Electroweak radiative corrections for collider physics

机译:碰撞者物理的ElectWeak辐射矫正

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摘要

Current particle phenomenology is characterized by the spectacular agreement of the predictions of the Standard Model of particle physics (SM) with all results from collider experiments and by the absence of significant signals of non-standard physics, despite the fact that we know that the SM cannot be the ultimate theory of nature. In this situation, confronting theory and experiment with high precision is a promising direction to look for potential traces of physics beyond the SM. On the theory side, the calculation of radiative corrections of the strong and electroweak interactions is at the heart of this task, a field that has seen tremendous conceptual and technical progress in the last decades. This review aims at a coherent introduction to the field of electroweak corrections and tries to fill gaps in the literature between standard textbook knowledge and the current state of the art. The SM and the machinery for its perturbative evaluation are reviewed in detail, putting particular emphasis on renormalization, on one-loop techniques, on modern amplitude methods and tools, on the separation of infrared singularities in real-emission corrections, on electroweak issues connected with hadronic initial or final states in collisions, and on the issue of unstable particles in quantum field theory together with corresponding practical solutions. (C) 2020 Elsevier B.V. All rights reserved.
机译:目前的颗粒现象学特征在于粒子物理学(SM)标准模型预测的术语吻合遵守碰撞器实验的所有结果,并且由于我们知道SM的事实是我们知道的事实不能成为自然的最终理论。在这种情况下,高精度的面对理论和实验是寻求超出SM超出SM的潜在物理痕迹的有希望的方向。在理论方面,计算强大和电牛排互动的辐射矫正是在这项任务的核心,这是一个在过去几十年中看到巨大的概念和技术进步的领域。本综述旨在介绍电热陶瓷校正领域,并试图填补标准教科书知识与现有技术之间的文献中的空白。详细审查了SM和机器的扰动评估,特别强调了在现代振幅方法和工具上的一种环路技术上的重新定位,在现实排放校正中的红外奇异性分离,与碰撞中的突袭初始或最终状态,以及量子场理论中不稳定粒子的问题以及相应的实用解决方案。 (c)2020 Elsevier B.V.保留所有权利。

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