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Produktinformationen "Jet Quenching in Relativistic Heavy Ion Collisions at the LHC"

This thesis presents the first measurements of jets in relativistic heavy ion collisions as reported by the ATLAS Collaboration. These include the first direct observation of jet quenching through the observation of a centrality-dependent dijet asymmetry. Also, a series of jet suppression measurements are presented, which provide quantitative constraints on theoretical models of jet quenching. These results follow a detailed introduction to heavy ion physics with emphasis on the phenomenon of jet quenching and a comprehensive description of the ATLAS detector and its capabilities with regard to performing these measurements. (lib)

H | B | T | Gramm
241 mm | 160 mm | 16 mm | 0.453 kg

Erscheinungsjahr
2013

Ausgabe
2014

FSK
0

Ausgabe
Hardcover

Verlag
Springer International Publishing

ISBN-10
3319012185

ISBN-13
9783319012186

Autor
Aaron Angerami

Sprache
Englisch

Seitenanzahl
188

Themen
Wissenschaftliche Standards, Normung usw.

Verantwortliche Person gemäß Art. 16 GPSR
Books on Demand GmbH, In de Tarpen 42, 22848, Norderstedt, 040 53433511, 040 53433584, info@bod.de

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Aaron Angerami

Autor/in

Aaron Angerami

Aaron Angerami is an experimental nuclear physicist at Columbia University. His research focuses on the study of quantum chromodynamics at high temperatures and densities, specifically on what forms of nuclear matter may exist under these conditions and how the fundamental properties of QCD are manifested in these systems. The medium of deconfined quarks and gluons produced in relativistic heavy ion collisions represents such a system that is experimentally accessible. His research has involved measurements of this medium, particularly through the phenomenon of jet quenching, with the ATLAS detector at the LHC.

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