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Titlebook: A Search for Displaced Leptons in the ATLAS Detector; Lesya Horyn Book 2022 The Editor(s) (if applicable) and The Author(s), under exclusi

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发表于 2025-3-21 17:01:10 | 显示全部楼层 |阅读模式
期刊全称A Search for Displaced Leptons in the ATLAS Detector
影响因子2023Lesya Horyn
视频video
发行地址Nominated as an outstanding PhD thesis by the University of Chicago.Describes innovative new data analysis methods for searches for new physics at the LHC.Provides an accessible overview of the Standa
学科分类Springer Theses
图书封面Titlebook: A Search for Displaced Leptons in the ATLAS Detector;  Lesya Horyn Book 2022 The Editor(s) (if applicable) and The Author(s), under exclusi
影响因子This thesis presents a search for long-lived particles decaying into displaced electrons and/or muons with large impact parameters. This signature provides unique sensitivity to the production of theoretical lepton-partners, sleptons. These particles are a feature of supersymmetric theories, which seek to address unanswered questions in nature. The signature searched for in this thesis is difficult to identify, and in fact, this is the first time it has been probed at the Large Hadron Collider (LHC). It covers a long-standing gap in coverage of possible new physics signatures. This thesis describes the special reconstruction and identification algorithms used to select leptons with large impact parameters and the details of the background estimation. The results are consistent with background, so limits on slepton masses and lifetimes in this model are calculated at 95% CL, drastically improving on the previous best limits from the Large Electron Positron Collider (LEP).
Pindex Book 2022
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esign choices of the ., describes how a collision energy of 13 TeV is achieved and typical operating parameters. The luminosity of the . is also discussed, along with how it translates to the number of possible events of a given process and to pileup.
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James M. Humber,Robert F. Almederescribe all physical phenomena. The Standard Model (.) is the best attempt at such a description. The . has undergone decades of rigorous testing and can explain almost all phenomena we see in experiments. Yet it is known that the . is missing explanations for crucial physical phenomena like quantum
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esign choices of the ., describes how a collision energy of 13 TeV is achieved and typical operating parameters. The luminosity of the . is also discussed, along with how it translates to the number of possible events of a given process and to pileup.
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