Filters
Results 1 - 1 of 1
Results 1 - 1 of 1.
Search took: 0.021 seconds
AbstractAbstract
[en] These measurements are made with pions of positive and negative charge for scattering angles taken between 41 deg and 143 deg. The detector consists in a range spectrometer conceived for this experiment. The total uncertainty in the measured differential cross sections is less than 4%. In the process we extract the charge-asymmetry parameter. A general treatment of radiative corrections for any two-body hadronic collision is developed an applied to the data. In order to test the principle of charge symmetry we make a calculation in the impulse approximation including external and internal Coulomb corrections and a mechanism for charge-symmetry breaking relative to the mass-difference of the neutron and proton and to those of the components of the 33 resonance. This calculation reproduces the cross sections within 20% and exhibits the extreme sensitivity of the asymmetry parameter to the observed structure. Starting from the strong amplitudes calculated from the Faddeev equations and in the framework of the T-matrix, we develop a detailed treatment of the distortions of these amplitudes generated by the Coulomb effects via phase-shift modifications. The comparison of the results with the collection of elastic scattering data, including the polarization observables, between 47 and 360 MeV, shows the importance of the effects treated in the mechanisms brought into play. This calculation reproduces the data rather well and in particular, the structure of the asymmetry parameter at 143 and 256 MeV
[fr]
Les mesures sont effectuees avec des pions de charges positives et negatives pour des angles de diffusion compris entre 41 et 143 deg. Le detecteur consiste en un spectrometre a parcours concu a cet effet. L'incertitude totale sur les sections efficaces differentielles mesurees est inferieure a 4%. Nous extrayons egalement le parametre d'asymetrie de charge. Un traitement general des corrections radiatives pour toute collision hadronique a deux corps est developpe et applique aux donnees. Afin de tester le principe de symetrie de charge nous effectuons un calcul dans l'approximation d'impulsion en incluant les corrections Coulombiennes externes et internes et un mecanisme de brisure de symetriede charge relatif a la difference des masses proton-neutron et a celle des composantes de la resonance 33. Ce calcul reproduit a 20% pres les sections efficaces et met en evidence la haute sensibilite de parametre d'asymetrie aux differents ingredients inclus dans le modele, sans en reproduire la structure observee. A partir des amplitudes fortes calculees par les equations de Faddeev et dans le cadre de la matrice-T, nous developpons un traitement detaille de distorsions de ces amplitudes engendrees par les effets coulombiens a travers la modification des dephasages. La comparaison des resultats avec l'ensemble des donnees de diffusion elastique, y compris les observables de polarisation, entre 47 et 360 MeV montre l'importance des effets traites dans les mecanismes en jeu. Ce calcul reproduit assez bien le large eventail des donnees et en particulier les structures des parametres d'asymetrie a 143 et 256 MeVOriginal Title
Contribution a l'etude experimentale et theorique des observables de la diffusion elastique π+- deuton: test de la symetrie de charge
Primary Subject
Source
Sep 1987; 142 p; These (D. es Sc.).
Record Type
Report
Literature Type
Thesis/Dissertation
Report Number
Country of publication
ANGULAR DISTRIBUTION, ASYMMETRY, COULOMB CORRECTION, DEUTERIUM TARGET, DIFFERENTIAL CROSS SECTIONS, ELASTIC SCATTERING, IMPULSE APPROXIMATION, MEV RANGE 100-1000, MEV RANGE 10-100, PION MINUS REACTIONS, PION PLUS REACTIONS, RADIATIVE CORRECTIONS, SCATTERING AMPLITUDES, SPIN ORIENTATION, SYMMETRY BREAKING
Reference NumberReference Number
INIS VolumeINIS Volume
INIS IssueINIS Issue