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Proton elastic scattering from tin isotopes at 295 MeV and systematic change of neutron density distributions

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arxiv 0801.3082 v2 pith:WHYZLTCM submitted 2008-01-20 nucl-ex

classification nucl-ex
keywords densityneutronelasticisotopesprotonscatteringsystematicdeduce
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abstract

Cross sections and analyzing powers for proton elastic scattering from $^{116,118,120,122,124}$Sn at 295 MeV have been measured for a momentum transfer of up to about 3.5 fm$^{-1}$ to deduce systematic changes of the neutron density distribution. We tuned the relativistic Love-Franey interaction to explain the proton elastic scattering of a nucleus whose density distribution is well known. Then, we applied this interaction to deduce the neutron density distributions of tin isotopes. The result of our analysis shows the clear systematic behavior of a gradual increase in the neutron skin thickness of tin isotopes with mass number.

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  1. Investigating the possibility of extracting neutron-skin thickness in nuclei by their collisions at intermediate energies

    nucl-th 2024-11 accept novelty 5.0 of 10

    In simulated intermediate-energy tin collisions, the free neutron-to-proton yield ratio is more sensitive to the symmetry potential than to the initial neutron-skin thickness in most kinematics.

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