Abstract
I. Skwira-Chalot Faculty of Physics, University of Warsaw, Hoza 69, 00-681 Warszawa, Poland (Received August 6, 2013) An experiment, with unpolarized deuteron beam of 160 MeV impinging on liquid hydrogen and liquid deuterium targets, was carried out using BINA detector at KVI in Groningen, the Netherlands. Data were collected for the purpose of obtaining high precision differential cross sections of break-up channels in dp and dd collisions. The elastic scattering data were also collected alongside for the purpose of cross-section normalization. A brief description of the experiment and the data analysis as well as some preliminary results are presented.
Highlights
Kozela The Henryk Niewodniczański Institute of Nuclear Physics PANMesschendorp Kernfysisch Versneller Instituut, Groningen, 9747 AA, The Netherlands
At present, we have realistic potential theories which explain the nucleon– nucleon interaction very well
Three-nucleon system dynamics can be investigated quantitatively by comparing observables calculated with the use of Faddeev equations with results of precise measurements
Summary
Messchendorp Kernfysisch Versneller Instituut, Groningen, 9747 AA, The Netherlands. I. Skwira-Chalot Faculty of Physics, University of Warsaw, Hoża 69, 00-681 Warszawa, Poland (Received August 6, 2013). With unpolarized deuteron beam of 160 MeV impinging on liquid hydrogen and liquid deuterium targets, was carried out using BINA detector at KVI in Groningen, the Netherlands. Data were collected for the purpose of obtaining high precision differential cross sections of break-up channels in dp and dd collisions. The elastic scattering data were collected alongside for the purpose of cross-section normalization. A brief description of the experiment and the data analysis as well as some preliminary results are presented. DOI:10.5506/APhysPolBSupp.6.1167 PACS numbers: 21.30.–x, 24.70.+s, 25.10.+s, 13.75.Cs ∗ Presented at the Symposium on Applied Nuclear Physics and Innovative Technologies, Kraków, Poland, June 3–6, 2013
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