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Report on scipost_202003_00051v1

R. Ramazani-SharifabadiDepartment of Physics, University of Tehran, Tehran, IranH. R. Amir-AhmadiKVI-CART, University of Groningen, Groningen, The NetherlandsM. T. BayatKVI-CART, University of Groningen, Groningen, The NetherlandsI. CiepałInstitute of Nuclear Physics, PAS, PL-31342, Krakw, PolandM. Eslami‐KalantariDepartment of Physics, School of Science, Yazd University, Yazd, IranN. Kalantar-NayestanakiKVI-CART, University of Groningen, Groningen, The NetherlandsSt. KistrynInstitute of Physics, Jagiellonian University, Krakw, PolandA. KozelaInstitute of Nuclear Physics, Polish Academy of Sciences, Krakw, PolandM. Mahjour‐ShafieiDepartment of Physics, University of Tehran, Tehran, IranH. MardanpourKVI-CART, University of Groningen, Groningen, The NetherlandsJ. G. MesschendorpKVI-CART, University of Groningen, Groningen, The NetherlandsM. Mohammadi-DadkanDepartment of Physics, University of Sistan and Baluchestan, Zahedan, IranA. Ramazani-Moghaddam-AraniDepartment of Physics, Faculty of Science, University of Kashan, Kashan, IranE. StephanUniversity of Silesia in KatowiceH. Tavakoli-ZanianiDepartment of Physics, School of Science, Yazd University, Yazd, Iran
2020en
ABI

Аннотация

Detailed measurements of vector and tensor analyzing powers of the 2 H( d, d p)n breakup process are presented. The data were obtained using a polarized deuteron-beam with an energy of 65 MeV/nucleon impinging on a liquid-deuterium target. The experiment was conducted at the AGOR facility at KVI using the BINA 4-detection system. The focus of this contribution is to analyze data of the d d scattering process in the regime at which the neutron acts as a spectator, which we refer to as the quasi-free (QF) limit. To achieve this, events for which the final-state deuteron and proton are coplanar have been analyzed and the data have been sorted for various reconstructed momenta of the missing neutron. In the limit of vanishing neutron momentum and at small deuteron-proton momentum transfer, the data match very well with measured and predicted spin observables of the elastic deuteron-proton scattering process. The agreement deteriorates rapidly with increasing neutron momentum and deuteron-proton momentum transfer. The results of coplanar configurations in four-body phase space are compared with the results of recent available theoretical calculations based on the Single-Scattering Approximation.

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