Deep inelastic inclusive and diffractive scattering at Q2Q^2 values from 25 to 320 GeV2^2 with the ZEUS forward plug calorimeter

Collaboration
Feb, 2008
89 pages
Published in:
  • Nucl.Phys.B 800 (2008) 1-76
e-Print:
Report number:
  • DESY-08-011
Experiments:

Citations per year

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Abstract: (Elsevier)
Deep inelastic scattering and its diffractive component, e p → e ′ γ ∗ p → e ′ X N , have been studied at HERA with the ZEUS detector using an integrated luminosity of 52.4 pb −1 . The M X method has been used to extract the diffractive contribution. A wide range in the centre-of-mass energy W (37–245 GeV), photon virtuality Q 2 (20–450 GeV 2 ) and mass M X (0.28–35 GeV) is covered. The diffractive cross section for 2 < M X < 15 GeV rises strongly with W , the rise becoming steeper as Q 2 increases. The data are also presented in terms of the diffractive structure function, F 2 D ( 3 ) , of the proton. For fixed Q 2 and fixed M X , x P F 2 D ( 3 ) shows a strong rise as x P → 0 , where x P is the fraction of the proton momentum carried by the pomeron. For Bjorken- x < 1 × 10 −3 , x P F 2 D ( 3 ) shows positive log Q 2 scaling violations, while for x ⩾ 5 × 10 −3 negative scaling violations are observed. The diffractive structure function is compatible with being leading twist. The data show that Regge factorisation is broken.
Note:
  • 89 pages, 27 figures
  • electron p: colliding beams
  • electron p: deep inelastic scattering
  • diffraction: structure function
  • hadron: mass spectrum
  • cross section: mass
  • energy dependence
  • momentum transfer dependence
  • p: structure function
  • pomeron: momentum spectrum
  • small-x
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