New results on quark helicity distributions and gluon polarization from the COMPASS experiment at CERN
K. Kurek
Abstract
Open-access reader
K. Kurek
Abstract
Open-access reader
The new results on quark helicity distributions and on the gluon polarization ∆G/G from the COMPASS experiment will be presented.COMPASS is a DIS experiment using polarized muons with an energy of 160 GeV scattered off polarized deuteron and proton targets.Quark helicity distributions are obtained from inclusive and semi-inclusive reactions from the 2002-2004 and 2006 deuteron data and from the 2007 proton data.The gluon polarization ∆G/G is determined from photon-gluon fusion (PGF) events.Two methods based on LO QCD approximation are used to extract PGF events: the selection of open-charm events via the observation of D * and D 0 mesons or of a pair of high-p T hadrons.The open-charm result is obtained from the 2002-2004 and 2006 data and it is updated with additional charm channels contributions.For these contributions a new method of the signal strength parameterization based on a neural network classification is used.The high-p T hadron pair result is obtained from the 2002-2004 data using a new method of accounting for background processes.
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The new results on quark helicity distributions and on the gluon polarization ∆G/G from the COMPASS experiment will be presented.COMPASS is a DIS experiment using polarized muons with an energy of 160 GeV scattered off polarized deuteron and proton targets.Quark helicity distributions are obtained from inclusive and semi-inclusive reactions from the 2002-2004 and 2006 deuteron data and from the 2007 proton data.The gluon polarization ∆G/G is determined from photon-gluon fusion (PGF) events.Two methods based on LO QCD approximation are used to extract PGF events: the selection of open-charm events via the observation of D * and D 0 mesons or of a pair of high-p T hadrons.The open-charm result is obtained from the 2002-2004 and 2006 data and it is updated with additional charm channels contributions.For these contributions a new method of the signal strength parameterization based on a neural network classification is used.The high-p T hadron pair result is obtained from the 2002-2004 data using a new method of accounting for background processes.
Key concepts: Physics, Particle physics, Gluon, Helicity, Nuclear physics, Hadron, HERA, Large Hadron Collider