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A bayesian analysis of QCD sum rules Philipp Gubler

Springer Nature - Springer Physics and Astronomy (R0) eBooks 2013 English International Available online

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Format:
Book
Thesis/Dissertation
Author/Creator:
Gubler, Philipp
Series:
Springer theses
Springer theses 2190-5053
Language:
English
Subjects (All):
Quantum chromodynamics--Mathematics.
Quantum chromodynamics.
Bayesian statistical decision theory.
Genre:
theses
dissertations
Academic theses
Physical Description:
1 online resource
Place of Publication:
Tokyo New York Springer ©2013
Summary:
The author develops a novel analysis method for QCD sum rules (QCDSR) by applying the maximum entropy method (MEM) to arrive at an analysis with less artificial assumptions than previously held. This is a first-time accomplishment in the field. In this thesis, a reformed MEM for QCDSR is formalized and is applied to the sum rules of several channels: the light-quark meson in the vector channel, the light-quark baryon channel with spin and isospin 1/2, and several quarkonium channels at both zero and finite temperatures. This novel technique of combining QCDSR with MEM is applied to the study of quarkonium in hot matter, which is an important probe of the quark-gluon plasma currently being created in heavy-ion collision experiments at RHIC and LHC
Contents:
Introduction and Review
Introduction
Basic Properties of QCD
Basics of QCD Sum Rules
The Maximum Entropy Method
Applications
MEM Analysis of the [rho] Meson Sum Rule
MEM Analysis of the Nucleon Sum Rule
Quarkonium Spectra at finite Temperature from QCD Sum Rules and MEM.- Concluding Remarks
Summary, Conclusion and Outlook
Appendix
Introduction and Revieaw Introduction Basic Properties of QCD Basics of QCD Sum Rules The Maximum Entropy Method Applications MEM Analysis of the ρ ρ Meson Sum Rule MEM Analysis of the Nucleon Sum Rule Quarkonium Spectra at Finite Temperature from QCD Sum Rules and MEM Concluding Remarks Summary, Conclusion and Outlook
Notes:
Ph. D. Tokyo Institute of Technology
Includes bibliographical references
ISBN:
9784431543183
443154318X
4431543171
9784431543176
OCLC:
837552284
Access Restriction:
Restricted for use by site license

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