English

Probing Vector Mesons in Deuteron Break-up Reactions

Nuclear Theory 2013-10-30 v3 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

We study vector meson photoproduction from the deuteron at high momentum transfer, accompanied by break-up of the deuteron into a proton and neutron. The large t-t involved allows one of the nucleons to be identified as struck, and the other as a spectator to the γNVN\gamma N\rightarrow VN subprocess. Corrections to the plane wave impulse approximation involve final state interactions (FSIs) between the struck nucleon or the vector meson, either of which is energetic, with the slow spectator nucleon. In this regime, the eikonal approximation is valid, so is employed to calculate the cross-section for the reaction. Due to the high-energy nature of the FSIs, the maxima of the rescatterings are located at nearly transverse directions of the fast hadrons. This results in two peaks in the angular distribution of the spectator nucleon, each corresponding to either the VV-NN or the pp-nn rescattering. The VV-NN peak provides a new means of probing the VV-NN interaction. This is checked for near-threshold ϕ\phi and J/ΨJ/\Psi photoproduction reactions which demonstrate that the VV-NN peak can be used to extract the largely unknown amplitudes of ϕ\phi-NN and J/ΨJ/\Psi-NN interactions. Two additional phenomena are observed when extending the calculation of J/ΨJ/\Psi photoproduction to the sub-threshold and high-energy domains. In the first case we observe overall suppression of FSI effects due to a restricted phase space for sub-threshold production in the rescattering amplitude. In the second, we observe cancellation of the VV-NN rescattering amplitudes for vector mesons produced off of different nucleons in the deuteron.

Keywords

Cite

@article{arxiv.1306.2368,
  title  = {Probing Vector Mesons in Deuteron Break-up Reactions},
  author = {Adam J. Freese and Misak M. Sargsian},
  journal= {arXiv preprint arXiv:1306.2368},
  year   = {2013}
}

Comments

27 pages, 13 figures

R2 v1 2026-06-22T00:31:40.043Z