Exclusive measurements of quasi-free proton scattering reactions in inverse and complete kinematics
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ISSN: 0370-2693
E-ISSN: 1873-2445
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Elsevier
Abstract
Quasi-free scattering reactions of the type (p, 2p) were measured for the first time exclusively in complete
and inverse kinematics, using a 12C beam at an energy of ∼400 MeV/u as a benchmark. This new
technique has been developed to study the single-particle structure of exotic nuclei in experiments with
radioactive-ion beams. The outgoing pair of protons and the fragments were measured simultaneously,
enabling an unambiguous identification of the reaction channels and a redundant measurement of the
kinematic observables. Both valence and deeply-bound nucleon orbits are probed, including those leading
to unbound states of the daughter nucleus. Exclusive (p, 2p) cross sections of 15.8(18) mb, 1.9(2) mb and
1.5(2) mb to the low-lying 0p-hole states overlapping with the ground state (3/2−) and with the bound
excited states of 11B at 2.125 MeV (1/2−) and 5.02 MeV (3/2−), respectively, were determined via γ -ray
spectroscopy. Particle-unstable deep-hole states, corresponding to proton removal from the 0s-orbital,
were studied via the invariant-mass technique. Cross sections and momentum distributions were extracted
and compared to theoretical calculations employing the eikonal formalism. The obtained results
are in a good agreement with this theory and with direct-kinematics experiments. The dependence of
the proton–proton scattering kinematics on the internal momentum of the struck proton and on its separation
energy was investigated for the first time in inverse kinematics employing a large-acceptance
measurement.
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Panin, V., Taylor, J. T., Paschalis, S., Wamers, F., Aksyutina, Y., Alvarez-Pol, H., ... & Chartier, M. (2016). Exclusive measurements of quasi-free proton scattering reactions in inverse and complete kinematics. Physics Letters B, 753, 204-210
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https://doi.org/10.1016/j.physletb.2015.11.082Sponsors
The authors acknowledge support from HIC for FAIR, the GSI-TU Darmstadt cooperation agreement, the BMBF under Contract No. 05P12RDFN8, the Helmholtz Alliance EMMI, the Swedish Re-search Council, the U.S. NS Grant No. 1415656, the DOE grant No. DE-FG02-08ER41533 and the Spanish research agency CICYT under Project No. FPA2009-07387
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© 2015 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/)








