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Measurement of Quarkonium Polarization to Probe QCD at the LHC: Springer Theses

Autor Valentin Knünz
en Limba Engleză Hardback – 18 ian 2017
This thesis discusses in detail the measurement of the polarizations of all S-wave vector quarkonium states in LHC proton-proton collisions with the CMS detector. Heavy quarkonium states constitute an ideal laboratory to study non-perturbative effects of quantum chromodynamics and to understand how quarks bind into hadrons.

The experimental results are interpreted through an original phenomenological approach, which leads to a coherent picture of quarkonium production cross sections and polarizations within a simple model, dominated by one single color-octet production mechanism. These findings provide new insights into the dynamics of heavy quarkonium production at the LHC, an important step towards a satisfactory understanding of hadron formation within the standard model of particle physics.

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Specificații

ISBN-13: 9783319499345
ISBN-10: 3319499343
Pagini: 166
Ilustrații: XVII, 166 p. 74 illus., 37 illus. in color.
Dimensiuni: 155 x 235 x 13 mm
Greutate: 0.44 kg
Ediția:1st ed. 2017
Editura: Springer International Publishing
Colecția Springer
Seria Springer Theses

Locul publicării:Cham, Switzerland

Cuprins

Introduction.- Quarkonium Physics.- Experimental Setup.- Data Analysis.- Discussion of Results.- Conclusions.


Notă biografică

Valentin Knünz completed his undergraduate and PhD studies at the University of Technology Vienna, performing experimental particle physics research at the Institute of High Energy Physics of the Austrian Academy of Sciences, participating in the CMS experiment at the LHC. Upon graduation he was accepted as a fellow at CERN, continuing his research within the CMS collaboration.

Textul de pe ultima copertă

This thesis discusses in detail the measurement of the polarizations of all S-wave vector quarkonium states in LHC proton-proton collisions with the CMS detector. Heavy quarkonium states constitute an ideal laboratory to study non-perturbative effects of quantum chromodynamics and to understand how quarks bind into hadrons.

The experimental results are interpreted through an original phenomenological approach, which leads to a coherent picture of quarkonium production cross sections and polarizations within a simple model, dominated by one single color-octet production mechanism. These findings provide new insights into the dynamics of heavy quarkonium production at the LHC, an important step towards a satisfactory understanding of hadron formation within the standard model of particle physics.


Caracteristici

Nominated as an outstanding PhD thesis by CERN Recipient of the CMS prize and the Victor-Hess prize for the best thesis of 2015 Provides an in-depth description of novel experimental techniques implemented at the LHC Offers a didactic description of an original solution to a long-standing puzzle in particle physics Includes supplementary material: sn.pub/extras