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Differential Cross Section and Photon-Beam Asymmetry for the γ[over →]p → π^{-}Δ^{++}(1232) Reaction at Forward π^{-} Angles for E_{γ}=1.5-2.95 GeV

Authors :
H, Kohri
S H, Shiu
W C, Chang
Y, Yanai
D S, Ahn
J K, Ahn
J Y, Chen
S, Daté
H, Ejiri
H, Fujimura
M, Fujiwara
S, Fukui
W, Gohn
K, Hicks
A, Hosaka
T, Hotta
S H, Hwang
K, Imai
T, Ishikawa
K, Joo
Y, Kato
Y, Kon
H S, Lee
Y, Maeda
T, Mibe
M, Miyabe
Y, Morino
N, Muramatsu
T, Nakano
Y, Nakatsugawa
S I, Nam
M, Niiyama
H, Noumi
Y, Ohashi
T, Ohta
M, Oka
J D, Parker
C, Rangacharyulu
S Y, Ryu
T, Sawada
H, Shimizu
E A, Strokovsky
Y, Sugaya
M, Sumihama
T, Tsunemi
M, Uchida
M, Ungaro
S Y, Wang
M, Yosoi
Source :
Physical review letters. 120(20)
Publication Year :
2018

Abstract

Differential cross sections and photon-beam asymmetries for the γ[over →]p→π^{-}Δ^{++}(1232) reaction have been measured for 0.7cosθ_{π}^{c.m.}1 and E_{γ}=1.5-2.95 GeV at SPring-8/LEPS. The first-ever high statistics cross-section data are obtained in this kinematical region, and the asymmetry data for 1.5E_{γ}(GeV)2.8 are obtained for the first time. This reaction has a unique feature for studying the production mechanisms of a pure uu[over ¯] quark pair in the final state from the proton. Although there is no distinct peak structure in the cross sections, a non-negligible excess over the theoretical predictions is observed at E_{γ}=1.5-1.8 GeV. The asymmetries are found to be negative in most of the present kinematical regions, suggesting the dominance of π exchange in the t channel. The negative asymmetries at forward meson production angles are different from the asymmetries previously measured for the photoproduction reactions producing a dd[over ¯] or an ss[over ¯] quark pair in the final state. Advanced theoretical models introducing nucleon resonances and additional unnatural-parity exchanges are needed to reproduce the present data.

Details

ISSN :
10797114
Volume :
120
Issue :
20
Database :
OpenAIRE
Journal :
Physical review letters
Accession number :
edsair.pmid..........64807ebe87966491d536a0f0d91b8233