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Topquark Pair Production Cross Sections And Calibration Of The Topquark Montecarlo Mass Measurements Performed With The Cms Detector Using Lhc Run I Protonproton Collision Data 1st Edition Jan Kieseler Auth

  • SKU: BELL-5606562
Topquark Pair Production Cross Sections And Calibration Of The Topquark Montecarlo Mass Measurements Performed With The Cms Detector Using Lhc Run I Protonproton Collision Data 1st Edition Jan Kieseler Auth
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Topquark Pair Production Cross Sections And Calibration Of The Topquark Montecarlo Mass Measurements Performed With The Cms Detector Using Lhc Run I Protonproton Collision Data 1st Edition Jan Kieseler Auth instant download after payment.

Publisher: Springer International Publishing
File Extension: PDF
File size: 7.92 MB
Pages: 172
Author: Jan Kieseler (auth.)
ISBN: 9783319400044, 9783319400051, 3319400045, 3319400053
Language: English
Year: 2016
Edition: 1

Product desciption

Topquark Pair Production Cross Sections And Calibration Of The Topquark Montecarlo Mass Measurements Performed With The Cms Detector Using Lhc Run I Protonproton Collision Data 1st Edition Jan Kieseler Auth by Jan Kieseler (auth.) 9783319400044, 9783319400051, 3319400045, 3319400053 instant download after payment.

This thesis presents the first experimental calibration of the top-quark Monte-Carlo mass. It also provides the top-quark mass-independent and most precise top-quark pair production cross-section measurement to date. The most precise measurements of the top-quark mass obtain the top-quark mass parameter (Monte-Carlo mass) used in simulations, which are partially based on heuristic models. Its interpretation in terms of mass parameters used in theoretical calculations, e.g. a running or a pole mass, has been a long-standing open problem with far-reaching implications beyond particle physics, even affecting conclusions on the stability of the vacuum state of our universe.
In this thesis, this problem is solved experimentally in three steps using data obtained with the compact muon solenoid (CMS) detector. The most precise top-quark pair production cross-section measurements to date are performed. The Monte-Carlo mass is determined and a new method for extracting the top-quark mass from theoretical calculations is presented. Lastly, the top-quark production cross-sections are obtained – for the first time – without residual dependence on the top-quark mass, are interpreted using theoretical calculations to determine the top-quark running- and pole mass with unprecedented precision, and are fully consistently compared with the simultaneously obtained top-quark Monte-Carlo mass.

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