English

n-p Short-Range Correlations from (p,2p + n) Measurements

Nuclear Experiment 2009-11-07 v1

Abstract

We studied the 12^{12}C(p,2p+n) reaction at beam momenta of 5.9, 8.0 and 9.0 GeV/c. For quasielastic (p,2p) events we reconstructed {\bf p_f} the momentum of the knocked-out proton before the reaction; {\bf p_f} was then compared (event-by-event) with {\bf p_n}, the measured, coincident neutron momentum. For pn|p_n| > kF_F = 0.220 GeV/c (the Fermi momentum) a strong back-to-back directional correlation between {\bf p_f} and {\bf p_n} was observed, indicative of short-range n-p correlations. From {\bf p_n} and {\bf p_f} we constructed the distributions of c.m. and relative motion in the longitudinal direction for correlated pairs. After correcting for detection efficiency, flux attenuation and solid angle, we determined that 49 ±\pm 13 % of events with pf|p_f| > k_F had directionally correlated neutrons with pn|p_n| > kF_F. Thus short-range 2N correlations are a major source of high-momentum nucleons in nuclei.

Keywords

Cite

@article{arxiv.nucl-ex/0206003,
  title  = {n-p Short-Range Correlations from (p,2p + n) Measurements},
  author = {A. Tang and J. W. Watson and J. Aclander and J. Alster and G. Asryan and Y. Averichev and D. Barton and V. Baturin and N. Bukhtoyarova and A. Carroll and S. Heppelmann and A. Leksanov and Y. Makdisi and A. Malki and E. Minina and I. Navon and H. Nicholson and A. Ogawa and Yu. Panebratsev and E. Piasetzky and A. Schetkovsky and S. Shimanskiy and D. Zhalov},
  journal= {arXiv preprint arXiv:nucl-ex/0206003},
  year   = {2009}
}

Comments

4 pages and 4 figures, submitted to Phys. Rev. Lett