25 research outputs found
Aspects of Two-Photon Physics at Linear e+e- Colliders
We discuss various reactions at future e+e- and gamma-gamma colliders
involving real (beamstrahlung or backscattered laser) or quasi--real
(bremsstrahlung) photons in the initial state and hadrons in the final state.
The production of two central jets with large pT is described in some detail;
we give distributions for the rapidity and pT of the jets as well as the
di--jet invariant mass, and discuss the relative importance of various initial
state configurations and the uncertainties in our predictions. We also present
results for `mono--jet' production where one jet goes down a beam pipe, for the
production of charm, bottom and top quarks, and for single production of W and
Z bosons. Where appropriate, the two--photon processes are compared with
annihilation reactions leading to similar final states. We also argue that the
behaviour of the total inelastic gamma-gamma cross section at high energies
will probably have little impact on the severity of background problems caused
by soft and semi--hard (`minijet') two--photon reactions. We find very large
differences in cross sections for all two--photon processes between existing
designs for future e+e- colliders, due to the different beamstrahlung spectra;
in particular, both designs with >1 events per bunch crossing exist.Comment: 51 pages, 13 figures(not included
Inclusive Dijet Production at HERA: Direct Photon Cross Sections in Next-To-Leading Order QCD
We have calculated inclusive two-jet cross sections in next-to-leading order
QCD for direct photoproduction in low collisions at HERA. Infrared
and collinear singularities in real and virtual contributions are cancelled
with the phase space slicing method. Analytical formulas for the different
contributions giving the dependence on the slicing parameter are presented.
Various one- and two-jet distributions have been computed demonstrating the
flexibility of the method.Comment: 30 pages, latex, 11 figures appended as uuencoded fil
Inclusive D* Production in Two-Photon Collisions at LEP
Inclusive D^{*+-} production in two-photon collisions is studied with the L3
detector at LEP, using 683 pb^{-1} of data collected at centre-of-mass energies
from 183 to 208 GeV. Differential cross sections are determined as functions of
the transverse momentum and pseudorapidity of the D^{*+-} mesons in the
kinematic region 1 GeV < P_T < 12 GeV and |eta| < 1.4. The cross sections
sigma(e^+e^- -> e^+e^-D^{*+-}X) in this kinematical region is measured and the
sigma(e^+e^- -> e^+e^- cc{bar}X) cross section is derived. The measurements are
compared with next-to-leading order perturbative QCD calculations
Heavy quarkonium: progress, puzzles, and opportunities
A golden age for heavy quarkonium physics dawned a decade ago, initiated by
the confluence of exciting advances in quantum chromodynamics (QCD) and an
explosion of related experimental activity. The early years of this period were
chronicled in the Quarkonium Working Group (QWG) CERN Yellow Report (YR) in
2004, which presented a comprehensive review of the status of the field at that
time and provided specific recommendations for further progress. However, the
broad spectrum of subsequent breakthroughs, surprises, and continuing puzzles
could only be partially anticipated. Since the release of the YR, the BESII
program concluded only to give birth to BESIII; the -factories and CLEO-c
flourished; quarkonium production and polarization measurements at HERA and the
Tevatron matured; and heavy-ion collisions at RHIC have opened a window on the
deconfinement regime. All these experiments leave legacies of quality,
precision, and unsolved mysteries for quarkonium physics, and therefore beg for
continuing investigations. The plethora of newly-found quarkonium-like states
unleashed a flood of theoretical investigations into new forms of matter such
as quark-gluon hybrids, mesonic molecules, and tetraquarks. Measurements of the
spectroscopy, decays, production, and in-medium behavior of c\bar{c}, b\bar{b},
and b\bar{c} bound states have been shown to validate some theoretical
approaches to QCD and highlight lack of quantitative success for others. The
intriguing details of quarkonium suppression in heavy-ion collisions that have
emerged from RHIC have elevated the importance of separating hot- and
cold-nuclear-matter effects in quark-gluon plasma studies. This review
systematically addresses all these matters and concludes by prioritizing
directions for ongoing and future efforts.Comment: 182 pages, 112 figures. Editors: N. Brambilla, S. Eidelman, B. K.
Heltsley, R. Vogt. Section Coordinators: G. T. Bodwin, E. Eichten, A. D.
Frawley, A. B. Meyer, R. E. Mitchell, V. Papadimitriou, P. Petreczky, A. A.
Petrov, P. Robbe, A. Vair
Measurements of the Cross Sections for Open Charm and Beauty Production in gamma gamma Collisions at root(s)=189-202 GeV
The production of c and b quarks in gamma-gamma collisions is studied with
the L3 detector at LEP with 410 pb^-1 of data, collected at centre-of-mass
energies from 189 GeV to 202 GeV. Hadronic final states containing c and b
quarks are identified by detecting electrons or muons from their semileptonic
decays. The cross sections sigma(e+e- -> e+e- c c~ X) and sigma(e+e- -> e+e- b
b~ X) are measured and compared to next-to-leading order perturbative QCD
calculations. The cross section of b production is measured in gamma-gamma
collisions for the first time. It is in excess of the QCD prediction by a
factor of three
Measurement of the Charm Production Cross Section in gamma gamma Collisions at LEP
Open charm production in gamma-gamma collisions is studied with data
collected at e+e- centre-of-mass energies from 189 GeV to 202 GeV corresponding
to a total integrated luminosity of 410 pb-1. The charm cross section
sigma(gamma gamma ---> c c~ X) is measured for the first time as a function of
the two-photon centre-of-mass energy in the interval from 5 GeV to 70 GeV and
is compared to NLO QCD calculations
High Energy Photon-Nucleon and Photon-Nucleus Cross Sections
We re\,examine the theory of hadronic photon-nucleon interactions at the
quark-gluon level. The possibility of multiple parton collisions in a single
photon-nucleon collision requires an eikonal treatment of the high-energy
scattering process. We give a general formulation of the theory in which the
cross section is expressed as a sum over properly eikonalized cross
sections for the interaction of the virtual hadronic components of the photon
with the proton, with each cross section weighted by the probability with which
that component appears in the photon, and then develop a detailed model which
includes contributions from light vector mesons and from excited virtual states
described in a quark-gluon basis. The parton distribution functions which
appear can be related approximately to those in the pion, while a weighted sum
gives the distribution functions for the photon. We use the model to make
improved QCD-based predictions for the total inelastic photon-nucleon and
photon-nucleus cross sections at energies relevant for HERA experiments and
cosmic ray observations. We emphasize the importance in this procedure of
including a soft-scattering background such that the calculated cross sections
join smoothly with low-energy data.Comment: 34 pages, 6 figs. available on request from honjo@wishep. bitnet,
MAD/TH/91-57, submitted to Phys. Rev.