354 research outputs found
Infrared structure of jets at NNLO: QED-type contributions
The NNLO QCD corrections to the jets can be decomposed
according to their colour factors. Out of the seven colour factors, three are
of QED-type: , and . We use the antenna subtraction
method to compute these contributions, providing complete expressions for the
subtraction terms in and .Comment: Talk presented at Loops and Legs 2006, Eisenac
Isolated Photons in Deep Inelastic Scattering
Photon radiation at large transverse momenta at colliders is a detailed probe
of hard interaction dynamics. The isolated photon production cross section in
deep inelastic scattering was measured recently by the ZEUS experiment, and
found to be considerably larger than theoretical predictions obtained with
widely used event generators. To investigate this discrepancy, we perform a
dedicated parton-level calculation of this observable, including contributions
from fragmentation and large-angle radiation. Our results are in good agreement
with all aspects of the experimental measurement.Comment: 4 pages, 3 figure
Deep-inelastic Electron-Photon Scattering at High Q^2 : Neutral and Charged Current Reactions
We present the results of a calculation of deep inelastic electron-photon
scattering at a linear collider for very high virtuality of the intermediate
gauge boson up to NLO in perturbative QCD. The real photon is produced
unpolarized via the Compton back scattering of laser light of the incoming
beam. For values close to the masses squared of the Z and W gauge bosons,
the deep inelastic electron-photon scattering process receives important
contributions not only from virtual photon exchange but also from the exchange
of a Z-boson and a W-boson. We find that the total cross section for center of
mass energies above is at least of and has an
important charged current contribution.Comment: Talk given at the International Conference on the Structure and
Interactions of the Photon, PHOTON 99, Freiburg im Breisgau, Germany, May
23-27, 1999. To be published in the Proceedings. 6 pages, 6 postscript
figures. The complete paper, including figures, is also available via
anonymous ftp at ftp://ttpux2.physik.uni-karlsruhe.de/ttp99/ttp99-30/ or via
www at http://www-ttp.physik.uni-karlsruhe.de/Preprints
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