AI 中文总结
该研究针对标准模型未解决的宇宙相关问题,探讨利用能量覆盖Z极点到多TeV量级的未来轻子对撞机探测电弱领域,研究辐射修正对电弱过程建模的影响。
AI 中文摘要
尽管标准模型(Standard Model)能够描述全球所有实验获取的对撞机数据,但关于宇宙演化的若干问题仍未得到解答,包括等级问题、重子不对称性以及暗物质密度问题。为解决这些未解决的问题,粒子物理学界一致认为需要建造下一代对撞机,以更高的精度探测标准模型,并可能揭示该基础理论预测之外的偏差。未来的轻子对撞机,其运行能量从Z玻色子极点直至多TeV量级,能够以多种方式探测电弱领域。本论文研究了辐射修正对电弱过程建模的影响。
英文摘要
Despite the Standard Model's ability to describe collider data from all experiments conducted around the world, several questions about the history of the Universe, including the hierarchy problem, the baryon asymmetry, and the dark matter density, remain open. To address these unresolved issues, the particle physics community agrees on the need to construct a next-generation collider that could probe the Standard Model with higher accuracy and potentially reveal deviations from the predictions of this fundamental theory. Future lepton colliders, operating at energies from the Z pole up to the multi-TeV scale, could probe the electroweak sector in various ways. In this thesis, the influence of radiative corrections on the modelling of electroweak processes is investigated.
CommentsPhD thesis; University of Warsaw, Poland and DESY, Germany