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Search for New Phenomena in Dijet Angular Distributions at ?s = 8 and 13 TeV (2017)

Search for New Phenomena in Dijet Angular Distributions at √s = 8 and 13 TeV

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"Search for New Phenomena in Dijet Angular Distributions at √s = 8 and 13 TeV" by Lene Kristian Bryngemark is a mathematics book and learning resource focused on Deep Sky & Solar System. Best for teachers, students, and readers looking for stronger mathematical understanding.

This thesis describes the use of the angular distributions of the most energetic dijets in data recorded by the ATLAS experiment, at CERN’s Large Hadron Collider (LHC), the goal of which is to search for phenomena beyond what the current theory of Particle Physics (the Standard Model) can describe. It also describes the deployment of the method used in ATLAS to correct for the distortions in jet energy measurements caused by additional proton–proton interactions. The thesis provides a detailed introduction to understanding jets and dijet searches at the LHC. The experiments were carried out at two record collider centre-of-mass energies (8 and 13 TeV), probing smaller distances than ever before. Across a broad momentum transfer range, the proton constituents (quarks and gluons) display the same kinematical behaviour, and thus still appear to be point-like. Data are compared to predictions corrected for next-to-leading order quantum chromodynamics (NLO QCD) as well as electroweak effects, demonstrating excellent agreement. The results are subsequently used to set limits on parameters of suggested theoretical extensions to the Standard Model (SM), including the effective coupling and mass of a Dark Matter mediator.

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Best For: Researchers and students in particle physics and experimental high-energy physics.
Focus: Analyzing angular distributions of dijets to identify phenomena beyond the Standard Model using data from the ATLAS experiment at the LHC.
Covers: Methods for correcting jet energy measurement distortions caused by additional proton-proton interactions and the analysis of dijet angular distributions at 8 and 13 TeV collision energies.
Why It Matters: Provides insights into potential new physics phenomena by improving measurement accuracy and analyzing high-energy collision data, contributing to the understanding of fundamental particles and forces.

"Search for New Phenomena in Dijet Angular Distributions at √s = 8 and 13 TeV" by Lene Kristian Bryngemark is a mathematics book and learning resource focused on Deep Sky & Solar System. Best for teachers, students, and readers looking for stronger mathematical understanding.

Topic: Deep Sky & Solar System

Author: Lene Kristian Bryngemark

Who this is for:

  • Teachers and classroom instructors
  • Students building subject mastery
  • Readers looking for practical learning support

Why this book matters: It stands out as a practical math resource that helps explain concepts, strengthen problem-solving, and support classroom or independent learning.

This thesis describes the use of the angular distributions of the most energetic dijets in data recorded by the ATLAS experiment, at CERN’s Large Hadron Collider (LHC), the goal of which is to search for phenomena beyond what the current theory of Particle Physics (the Standard Model) can describe. It also describes the deployment of the method used in ATLAS to correct for the distortions in jet energy measurements caused by additional proton–proton interactions. The thesis provides a detailed introduction to understanding jets and dijet searches at the LHC. The experiments were carried out at two record collider centre-of-mass energies (8 and 13 TeV), probing smaller distances than ever before. Across a broad momentum transfer range, the proton constituents (quarks and gluons) display the same kinematical behaviour, and thus still appear to be point-like. Data are compared to predictions corrected for next-to-leading order quantum chromodynamics (NLO QCD) as well as electroweak effects, demonstrating excellent agreement. The results are subsequently used to set limits on parameters of suggested theoretical extensions to the Standard Model (SM), including the effective coupling and mass of a Dark Matter mediator.

AuthorLene Kristian Bryngemark
PublisherSpringer
Published2018-01-23
ISBN-139783319673455
BindingHardcover
Pages173
LanguageEnglish
SubjectsScience
TopicDeep Sky & Solar System
SeriesSpringer Theses

Format: Hardcover

Length: 173 pages

Language: English

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