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The Physics of Ultraperipheral Collisions at the LHC

We discuss the physics of large impact parameter interactions at the LHC: ultraperipheral collisions (UPCs). The dominant processes in UPCs are photon-nucleon (nucleus) interactions. The current LHC detector configurations can explore small $x$ hard phenomena with nuclei and nucleons at photon-nucle...

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Detalles Bibliográficos
Autores principales: Baltz, A.J., Baur, G., d'Enterria, D., Frankfurt, L., Gelis, F., Guzey, V., Hencken, K., Kharlov, Yu., Klasen, M., Klein, S.R., Nikulin, V., Nystrand, J., Pshenichnov, I.A., Sadovsky, S., Scapparone, E., Seger, J., Strikman, M., Tverskoy, M., Vogt, R., White, S.N., Wiedemann, U.A., Yepes, P., Zhalov, M.
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physrep.2007.12.001
http://cds.cern.ch/record/1042886
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author Baltz, A.J.
Baur, G.
d'Enterria, D.
Frankfurt, L.
Gelis, F.
Guzey, V.
Hencken, K.
Kharlov, Yu.
Klasen, M.
Klein, S.R.
Nikulin, V.
Nystrand, J.
Pshenichnov, I.A.
Sadovsky, S.
Scapparone, E.
Seger, J.
Strikman, M.
Tverskoy, M.
Vogt, R.
White, S.N.
Wiedemann, U.A.
Yepes, P.
Zhalov, M.
author_facet Baltz, A.J.
Baur, G.
d'Enterria, D.
Frankfurt, L.
Gelis, F.
Guzey, V.
Hencken, K.
Kharlov, Yu.
Klasen, M.
Klein, S.R.
Nikulin, V.
Nystrand, J.
Pshenichnov, I.A.
Sadovsky, S.
Scapparone, E.
Seger, J.
Strikman, M.
Tverskoy, M.
Vogt, R.
White, S.N.
Wiedemann, U.A.
Yepes, P.
Zhalov, M.
author_sort Baltz, A.J.
collection CERN
description We discuss the physics of large impact parameter interactions at the LHC: ultraperipheral collisions (UPCs). The dominant processes in UPCs are photon-nucleon (nucleus) interactions. The current LHC detector configurations can explore small $x$ hard phenomena with nuclei and nucleons at photon-nucleon center-of-mass energies above 1 TeV, extending the $x$ range of HERA by a factor of ten. In particular, it will be possible to probe diffractive and inclusive parton densities in nuclei using several processes. The interaction of small dipoles with protons and nuclei can be investigated in elastic and quasi-elastic $J/\psi$ and $\Upsilon$ production as well as in high $t$ $\rho^0$ production accompanied by a rapidity gap. Several of these phenomena provide clean signatures of the onset of the new high gluon density QCD regime. The LHC is in the kinematic range where nonlinear effects are several times larger than at HERA. Two-photon processes in UPCs are also studied. In addition, while UPCs play a role in limiting the maximum beam luminosity, they can also be used a luminosity monitor by measuring mutual electromagnetic dissociation of the beam nuclei. We also review similar studies at HERA and RHIC as well as describe the potential use of the LHC detectors for UPC measurements.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
record_format invenio
spelling cern-10428862021-09-17T02:59:46Zdoi:10.1016/j.physrep.2007.12.001http://cds.cern.ch/record/1042886engBaltz, A.J.Baur, G.d'Enterria, D.Frankfurt, L.Gelis, F.Guzey, V.Hencken, K.Kharlov, Yu.Klasen, M.Klein, S.R.Nikulin, V.Nystrand, J.Pshenichnov, I.A.Sadovsky, S.Scapparone, E.Seger, J.Strikman, M.Tverskoy, M.Vogt, R.White, S.N.Wiedemann, U.A.Yepes, P.Zhalov, M.The Physics of Ultraperipheral Collisions at the LHCNuclear Physics - TheoryWe discuss the physics of large impact parameter interactions at the LHC: ultraperipheral collisions (UPCs). The dominant processes in UPCs are photon-nucleon (nucleus) interactions. The current LHC detector configurations can explore small $x$ hard phenomena with nuclei and nucleons at photon-nucleon center-of-mass energies above 1 TeV, extending the $x$ range of HERA by a factor of ten. In particular, it will be possible to probe diffractive and inclusive parton densities in nuclei using several processes. The interaction of small dipoles with protons and nuclei can be investigated in elastic and quasi-elastic $J/\psi$ and $\Upsilon$ production as well as in high $t$ $\rho^0$ production accompanied by a rapidity gap. Several of these phenomena provide clean signatures of the onset of the new high gluon density QCD regime. The LHC is in the kinematic range where nonlinear effects are several times larger than at HERA. Two-photon processes in UPCs are also studied. In addition, while UPCs play a role in limiting the maximum beam luminosity, they can also be used a luminosity monitor by measuring mutual electromagnetic dissociation of the beam nuclei. We also review similar studies at HERA and RHIC as well as describe the potential use of the LHC detectors for UPC measurements.We discuss the physics of large impact parameter interactions at the LHC: ultraperipheral collisions (UPCs). The dominant processes in UPCs are photon-nucleon (nucleus) interactions. The current LHC detector configurations can explore small $x$ hard phenomena with nuclei and nucleons at photon-nucleon center-of-mass energies above 1 TeV, extending the $x$ range of HERA by a factor of ten. In particular, it will be possible to probe diffractive and inclusive parton densities in nuclei using several processes. The interaction of small dipoles with protons and nuclei can be investigated in elastic and quasi-elastic $J/\psi$ and $\Upsilon$ production as well as in high $t$ $\rho^0$ production accompanied by a rapidity gap. Several of these phenomena provide clean signatures of the onset of the new high gluon density QCD regime. The LHC is in the kinematic range where nonlinear effects are several times larger than at HERA. Two-photon processes in UPCs are also studied. In addition, while UPCs play a role in limiting the maxiarXiv:0706.3356oai:cds.cern.ch:10428862007-06-25
spellingShingle Nuclear Physics - Theory
Baltz, A.J.
Baur, G.
d'Enterria, D.
Frankfurt, L.
Gelis, F.
Guzey, V.
Hencken, K.
Kharlov, Yu.
Klasen, M.
Klein, S.R.
Nikulin, V.
Nystrand, J.
Pshenichnov, I.A.
Sadovsky, S.
Scapparone, E.
Seger, J.
Strikman, M.
Tverskoy, M.
Vogt, R.
White, S.N.
Wiedemann, U.A.
Yepes, P.
Zhalov, M.
The Physics of Ultraperipheral Collisions at the LHC
title The Physics of Ultraperipheral Collisions at the LHC
title_full The Physics of Ultraperipheral Collisions at the LHC
title_fullStr The Physics of Ultraperipheral Collisions at the LHC
title_full_unstemmed The Physics of Ultraperipheral Collisions at the LHC
title_short The Physics of Ultraperipheral Collisions at the LHC
title_sort physics of ultraperipheral collisions at the lhc
topic Nuclear Physics - Theory
url https://dx.doi.org/10.1016/j.physrep.2007.12.001
http://cds.cern.ch/record/1042886
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