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Compton Scattering by the Proton using a Large-Acceptance Arrangement

Authors :
Wolf, S.
Lisin, V.
Kondratiev, R.
Massone, A. M.
Galler, G.
Ahrens, J.
Arends, H. -J.
Beck, R.
Camen, M.
Capitani, G. P.
Grabmayr, P.
Härter, F.
Hehl, T.
Jennewein, P.
Kossert, K.
L'vov, A. I.
Molinari, C.
Ottonello, P.
Owens, R. O.
Peise, J.
Preobrajenskij, I.
Proff, S.
Robbiano, A.
Sanzone, M.
Schumacher, M.
Schmitz, M.
Wissmann, F.
Wolf, S.
Lisin, V.
Kondratiev, R.
Massone, A. M.
Galler, G.
Ahrens, J.
Arends, H. -J.
Beck, R.
Camen, M.
Capitani, G. P.
Grabmayr, P.
Härter, F.
Hehl, T.
Jennewein, P.
Kossert, K.
L'vov, A. I.
Molinari, C.
Ottonello, P.
Owens, R. O.
Peise, J.
Preobrajenskij, I.
Proff, S.
Robbiano, A.
Sanzone, M.
Schumacher, M.
Schmitz, M.
Wissmann, F.
Publication Year :
2001

Abstract

Compton scattering by the proton has been measured using the tagged-photon facility at MAMI (Mainz) and the large-acceptance arrangement LARA. The new data are interpreted in terms of dispersion theory based on the SAID-SM99K parameterization of photo-meson amplitudes. It is found that two-pion exchange in the t-channel is needed for a description of the data in the second resonance region. The data are well represented if this channel is modeled by a single pole with mass parameter m(sigma)=600 MeV. The asymptotic part of the spin dependent amplitude is found to be well represented by pi-0-exchange in the t-channel. A backward spin-polarizability of gamma(pi)=(-37.1+-0.6(stat+syst)+-3.0(model))x10^{-4}fm^4 has been determined from data of the first resonance region below 455 MeV. This value is in a good agreement with predictions of dispersion relations and chiral pertubation theory. From a subset of data between 280 and 360 MeV the resonance pion-photoproduction amplitudes were evaluated leading to a E2/M1 multipole ratio of the p-to-Delta radiative transition of EMR(340 MeV)=(-1.7+-0.4(stat+syst)+-0.2(model))%. It was found that this number is dependent on the parameterization of photo-meson amplitudes. With the MAID2K parameterization an E2/M1 multipole ratio of EMR(340 MeV)=(-2.0+-0.4(stat+syst)+-0.2(model))% is obtained.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1181988060
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1007.s100500170031