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Perturbative Saturation and the Soft Pomeron

We show that perturbation theory provides two distinct mechanisms for the power like growth of hadronic cross sections at high energy. One, the leading BFKL effect is due to the growth of the parton density, and is characterized by the leading BFKL exponent. The other mechanism is due to the infrare...

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Detalles Bibliográficos
Autores principales: Kovner, A, Wiedemann, Urs Achim
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.66.034031
http://cds.cern.ch/record/548733
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author Kovner, A
Wiedemann, Urs Achim
author_facet Kovner, A
Wiedemann, Urs Achim
author_sort Kovner, A
collection CERN
description We show that perturbation theory provides two distinct mechanisms for the power like growth of hadronic cross sections at high energy. One, the leading BFKL effect is due to the growth of the parton density, and is characterized by the leading BFKL exponent. The other mechanism is due to the infrared diffusion, or the long range nature of the Coulomb field of perturbatively massless gluons. When perturbative saturation effects are taken into account, the first mechanism is rendered ineffective but the second one persists. We suggest that these two distinct mechanisms are responsible for the appearance of two pomerons. The density growth effects are responsible for the hard pomeron and manifest themselves in small systems (e.g. gamma^* or small size fluctuations in the proton wave function) where saturation effects are not important. The soft pomeron is the manifestation of the exponential growth of the black saturated regions which appear in typical hadronic systems. We point out that the nonlinear generalization of the BFKL equation which takes into account wave function saturation effects ("pomeron loops") provides a well defined perturbative framework for the calculation of the soft pomeron intercept. The conjecture of a perturbative soft pomeron is consistent with picturing the proton as a loosely bound system of several small black regions corresponding e.g. to constituent quarks of size about 0.3 fm. Phenomenological implications of this picture are compatible with the main qualitative features of data on p-p scattering.
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spelling cern-5487332019-09-30T06:29:59Zdoi:10.1103/PhysRevD.66.034031http://cds.cern.ch/record/548733engKovner, AWiedemann, Urs AchimPerturbative Saturation and the Soft PomeronParticle Physics - PhenomenologyWe show that perturbation theory provides two distinct mechanisms for the power like growth of hadronic cross sections at high energy. One, the leading BFKL effect is due to the growth of the parton density, and is characterized by the leading BFKL exponent. The other mechanism is due to the infrared diffusion, or the long range nature of the Coulomb field of perturbatively massless gluons. When perturbative saturation effects are taken into account, the first mechanism is rendered ineffective but the second one persists. We suggest that these two distinct mechanisms are responsible for the appearance of two pomerons. The density growth effects are responsible for the hard pomeron and manifest themselves in small systems (e.g. gamma^* or small size fluctuations in the proton wave function) where saturation effects are not important. The soft pomeron is the manifestation of the exponential growth of the black saturated regions which appear in typical hadronic systems. We point out that the nonlinear generalization of the BFKL equation which takes into account wave function saturation effects ("pomeron loops") provides a well defined perturbative framework for the calculation of the soft pomeron intercept. The conjecture of a perturbative soft pomeron is consistent with picturing the proton as a loosely bound system of several small black regions corresponding e.g. to constituent quarks of size about 0.3 fm. Phenomenological implications of this picture are compatible with the main qualitative features of data on p-p scattering.hep-ph/0204277CERN-TH-2002-089oai:cds.cern.ch:5487332002-04-24
spellingShingle Particle Physics - Phenomenology
Kovner, A
Wiedemann, Urs Achim
Perturbative Saturation and the Soft Pomeron
title Perturbative Saturation and the Soft Pomeron
title_full Perturbative Saturation and the Soft Pomeron
title_fullStr Perturbative Saturation and the Soft Pomeron
title_full_unstemmed Perturbative Saturation and the Soft Pomeron
title_short Perturbative Saturation and the Soft Pomeron
title_sort perturbative saturation and the soft pomeron
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.66.034031
http://cds.cern.ch/record/548733
work_keys_str_mv AT kovnera perturbativesaturationandthesoftpomeron
AT wiedemannursachim perturbativesaturationandthesoftpomeron