Beam-target helicity asymmetry E in K+Sigma(-) photoproduction on the neutron

Zachariou, N.; Watts, D. P.; Fleming, J.; Sarantsev, A., V; Nikonov, V. A.; D'Angelo, A.; Bashkanov, M.; Hanretty, C.; Kageya, T.; Klein, F. J.; Lowry, M.; Lu, H.; Sandorfi, A.; Wei, X.; Zonta, I; et. al.

Abstract

We report a measurement of a beam-target double-polarisation observable (E) for the (gamma) over right arrow(n) over right arrow (p) -> K+Sigma(-) (p) reaction. The data were obtained impinging the circularly-polarised energy-tagged photon beam of Hall B at Jefferson Lab on a longitudinally-polarised frozen-spin hydrogen deuteride (HD) nuclear target. The E observable for an effective neutron target was determined for centre-of-mass energies 1.70 = W = 2.30 GeV, with reaction products detected over a wide angular acceptance by the CLAS spectrometer. These new double-polarisation data give unique constraints on the strange decays of excited neutron states. Inclusion of the new data within the Bonn-Gatchina theoretical model results in significant changes for the extracted photocouplings of a number of established nucleon resonances. Possible improvements in the PWA description of the experimental data with additional "missing" resonance states, including the N(2120)(3/2-) resonance, are also quantified. Crown Copyright (C) 2020 Published by Elsevier B.V.

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Título según WOS: Beam-target helicity asymmetry E in K+Sigma(-) photoproduction on the neutron
Título de la Revista: PHYSICS LETTERS B
Volumen: 808
Editorial: Elsevier
Fecha de publicación: 2020
DOI:

10.1016/j.physletb.2020.135662

Notas: ISI