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Exposition: QCD and Collider Physics: I . Lecture WS 2005/2006
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QCD and Collider Physics: I . Lecture WS 2005/2006
Authors: Hannes Jung, University of Hamburg, DESY -- Sem. 2
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- 100 Mb plus of lecture slides, 16 lectures, 136 pages, Lecture WS 2005/2006, University of Hamburg, DESY -- Sem. 2
- Abstract:
- 100 Mb plus of lecture slides, 16 lectures, 136 pages, Lecture WS 2005/2006, University of Hamburg, DESY -- Sem. 2
From the contents with weblinks to each seminar/lecture:
"sem 2
Intro to Deep Inelastic Scattering: kinematics, cross sections, QPM
16.11.
sem 2
Renormalisation and Evolution
23.11.
sem 2
Renormalisation and Evolution II
30.11.
sem 2
DGLAP and all that
7.12.
sem 2
DGLAP, small x and all that
14.12.
61/Hoersaal
Small x evolution: BFKL/CCFM
21.12.
sem 2
Exercises example file for form Solution to selected exercises by Zhenyu Ye (Frank)
11.1.
sem 2
Small x (continued)
18.1.
sem 2
Jets in LO/NLO
25.1.
sem 2
Jets and Heavy Quarks in LO/NLO and Fragmentation
1.2.
sem 2
Heavy Quarks, Fragmentation and Hadronization
8.2.
sem 2
Parton Showers, Hadronization and Diffraction
15.2.
sem 2
Diffraction II
22.2.
Lab1/sem 1
Diffraction III (high density systems)
sem 2 11:30
Structure of the photon; Resumee of lectures, discussion and questions
Literature (in alphabetic order):
Applications of pQCD, R.D. Field
Addison--Wesley 1989
Basics of perturbative QCD
Yu. Dokshitzer , V. Khoze and A. Mueller & S. Troyan
Edition Frontiers 1991
Collider Physics
V.D. Barger and R.J.N. Phillips
Addison--Wesley 1987
Deep Inelastic Scattering.
R. Devenish and A. Cooper--Sarkar
Oxford 2004
Handbook of pQCD
G. Sterman et al,
High-Energy Particle Diffraction
V. Barone and E. Predazzi
Springer 2002
Quarks and Leptons
F. Halzen and A.D. Martin
J.Wiley 1984
QCD and collider physics
R.K. Ellis, W.J. Stirling and B.R. Webber
Cambridge 1996
QCD at HERA
M. Kuhlen
Springer 1999
Quantum Field Theory
F. Mandl and G. Shaw
Wiley, 1993
The Lund Model
Bo Andersson
Cambridge 1998
The Partonic Structure of the Photon
M. Erdmann
Springer 1997
The Structure of the Proton
R.G. Roberts
Cambridge 1990
Example FORM--programs:
electron quark --> electron quark
EPA calculation
gamma* gluon ---> quark anti--quark (BGF, with full polarisation sums for tranverse and long. photons)
gamma* quark --> gluon quark (QCDC, in massive gluon scheme)
gamma* gluon --> quark anti--quark (BGF, in massive gluon scheme)
Exercises: 1 to 12"
https://www.desy.de/~jung/qcd_collider_physics_2005/welcome.html
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https://www.desy.de/~jung/qcd_collider_physics_2005/welcome.html
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Pending Errata and Addenda
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