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Basics of Perturbative QCD

Basics of Perturbative QCD
Author: Yuri Dokshitzer
Publisher: Atlantica Séguier Frontières
Total Pages: 286
Release: 1991
Genre: Perturbation (Quantum dynamics).
ISBN: 9782863321010

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Charm Production in Deep Inelastic Scattering

Charm Production in Deep Inelastic Scattering
Author: Sebastian Klein
Publisher: Springer Science & Business Media
Total Pages: 246
Release: 2011-10-09
Genre: Science
ISBN: 3642232868

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The production of heavy quarks in high-energy experiments offers a rich field to study, both experimentally and theoretically. Due to the additional quark mass, the description of these processes in the framework of perturbative QCD is much more demanding than it is for those involving only massless partons. In the last two decades, a large amount of precision data has been collected by the deep inelastic HERA experiment. In order to make full use of these data, a more precise theoretical description of charm quark production in deep inelastic scattering is needed. This work deals with the first calculation of fixed moments of the NNLO heavy flavor corrections to the proton structure function F2 in the limit of a small charm-quark mass. The correct treatment of these terms will allow not only a more precise analysis of the HERA data, but starting from there also a more precise determination of the parton distribution functions and the strong coupling constant, which is an essential input for LHC physics. The complexity of this calculation requires the application and development of technical and mathematical methods, which are also explained here in detail.


QCD and Collider Physics

QCD and Collider Physics
Author: R. K. Ellis
Publisher: Cambridge University Press
Total Pages: 462
Release: 2003-12-04
Genre: Science
ISBN: 9780521545891

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A detailed overview of the physics of high-energy colliders emphasising the role of QCD.


Deep Inelastic Scattering

Deep Inelastic Scattering
Author: Robin Devenish
Publisher: OUP Oxford
Total Pages: 418
Release: 2011-04-28
Genre: Science
ISBN: 0191621951

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This book provides an up-to-date, self-contained account of deep inelastic scattering in high-energy physics, intended for graduate students and physicists new to the subject. It covers the classic results which led to the quark-parton model of hadrons and the establishment of quantum chromodynamics as the theory of the strong nuclear force, in addition to new vistas in the subject opened up by the electron-proton collider HERA. The extraction of parton momentum distribution functions, a key input for physics at hadron colliders such as the Tevatron at Fermi Lab and the Large Hadron Collider at CERN, is described in detail. The challenges of the HERA data at 'low x' are described and possible explanations in terms of gluon dynamics and other models outlined. Other chapters cover: jet production at large momentum transfer and the determination of the strong coupling constant, electroweak interactions at very high momentum transfers, the extension of deep inelastic techniques to include hadronic probes, a summary of fully polarised inelastic scattering and the spin structure of the nucleon, and finally a brief account of methods in searching for signals 'beyond the standard model'.


Heavy Quark Production by Neutrinos and Antineutrinos. [Quark-parton Model, SU(2) X SU(2) X U(1) Gauge Group, 200 GeV].

Heavy Quark Production by Neutrinos and Antineutrinos. [Quark-parton Model, SU(2) X SU(2) X U(1) Gauge Group, 200 GeV].
Author:
Publisher:
Total Pages:
Release: 1979
Genre:
ISBN:

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The rate for producing t- and b-quarks in, respectively, neutrino and antineutrino interactions with nucleons are estimated. Experimental quark parton distribution functions, SU(2) x SU(2) x U(1) gauge group mixing angles, and threshold suppression through rescaling are used in the calculation. The ratios to total cross sections of b-quark production by anti nu, R/sub b//sup anti nu/, and t-quark production by .nu., R/sub t//sup nu/, are, respectively, R/sub b//sup anti nu/ approximately equal to 10−4 and R/sub t//sup nu/ approximately equal to 10−5 for an incident energy of 200 GeV. 13 references.