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Deuteron Breakup Differential Cross Sections and Analyzing Powers of \({\overrightarrow{d} + p}\) Scattering at E d  = 16 and 130 MeV

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Abstract

Deuteron breakup differential cross sections and analyzing powers for \({\overrightarrow{d} + p}\) scattering at E d  = 16 and 130 MeV are examined using the energy-independent quark-model nucleon–nucleon interaction fss2. The Coulomb effect is incorporated by the sharp cut-off Coulomb force, acting between quarks, without the phase-shift renormalization for the breakup amplitudes. Our results are very similar to those by the meson-exchange potentials, including disagreement for some specific kinematical configurations. The accurate and systematic KVI data at E d  = 130 MeV are reasonably reproduced by taking the Coulomb cut-off radius ρ ≥ 16 fm.

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Correspondence to Y. Fujiwara.

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Fujiwara, Y., Fukukawa, K. Deuteron Breakup Differential Cross Sections and Analyzing Powers of \({\overrightarrow{d} + p}\) Scattering at E d  = 16 and 130 MeV. Few-Body Syst 54, 1307–1310 (2013). https://doi.org/10.1007/s00601-012-0551-7

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  • DOI: https://doi.org/10.1007/s00601-012-0551-7

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