Probing the high momentum component of the deuteron at high Q2.

Academic Article

Abstract

  • The (2)H(e,e'p)n cross section at a momentum transfer of 3.5 (GeV/c)(2) was measured over a kinematical range that made it possible to study this reaction for a set of fixed missing momenta as a function of the neutron recoil angle θ(nq) and to extract missing momentum distributions for fixed values of θ(nq) up to 0.55  GeV/c. In the region of 35°≤θ(nq)≤45° recent calculations, which predict that final-state interactions are small, agree reasonably well with the experimental data. Therefore, these experimental reduced cross sections provide direct access to the high momentum component of the deuteron momentum distribution in exclusive deuteron electrodisintegration.
  • Authors

  • Boeglin, WU
  • Coman, L
  • Ambrozewicz, P
  • Aniol, K
  • Arrington, J
  • Batigne, G
  • Bosted, P
  • Camsonne, A
  • Chang, G
  • Chen, JP
  • Choi, S
  • Deur, A
  • Epstein, M
  • Finn, JM
  • Frullani, S
  • Furget, C
  • Garibaldi, F
  • Gayou, O
  • Gilman, R
  • Hansen, O
  • Hayes, D
  • Higinbotham, DW
  • Hinton, W
  • Hyde, C
  • Ibrahim, H
  • de Jager, CW
  • Jiang, X
  • Jones, MK
  • Kaufman, LJ
  • Klein, A
  • Kox, S
  • Kramer, L
  • Kumbartzki, G
  • Laget, JM
  • LeRose, J
  • Lindgren, R
  • Margaziotis, DJ
  • Markowitz, P
  • McCormick, K
  • Meziani, Z
  • Michaels, R
  • Milbrath, B
  • Mitchell, J
  • Monaghan, P
  • Moteabbed, M
  • Moussiegt, P
  • Nasseripour, R
  • Paschke, K
  • Perdrisat, C
  • Piasetzky, E
  • Punjabi, V
  • Qattan, IA
  • Quéméner, G
  • Ransome, RD
  • Raue, B
  • Réal, JS
  • Reinhold, J
  • Reitz, B
  • Roché, R
  • Roedelbronn, M
  • Saha, A
  • Slifer, Karl
  • Solvignon, P
  • Sulkosky, V
  • Ulmer, PE
  • Voutier, E
  • Weinstein, LB
  • Wojtsekhowski, B
  • Zeier, M
  • Hall A Collaboration
  • Status

    Publication Date

  • December 23, 2011
  • Has Subject Area

    Published In

    Keywords

  • Hall A Collaboration
  • Digital Object Identifier (doi)

    Pubmed Id

  • 22243152
  • Start Page

  • 262501
  • Volume

  • 107
  • Issue

  • 26