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arXiv:2101.10687·v1·Nuclear Experiment

Nuclear matter distributions in the neutron-rich carbon isotopes C from intermediate-energy proton elastic scattering in inverse kinematics

A.V. Dobrovolsky (a)🇷🇺 · G.A. Korolev (a)🇷🇺 · S. Tang (b,1)🇩🇪 · G.D. Alkhazov (a)🇷🇺 · G. Coló (c)🇮🇹 · I. Dillmann (b,2)🇩🇪 · P. Egelhof (b)🇩🇪 · A. Estradé (b,3)🇩🇪 · F. Farinon (b)🇩🇪 · H. Geissel (b)🇩🇪 · S. Ilieva (b)🇩🇪 · A.G. Inglessi (a)🇷🇺

Abstract

The absolute differential cross sections for small-angle proton elastic scattering off the nuclei C have been measured in inverse kinematics at energies near 700 MeV/u at GSI Darmstadt. The hydrogen-filled ionization chamber IKAR served simultaneously as a gas target and a detector for the recoil protons. The projectile scattering angles were measured with multi-wire tracking detectors. The radial nuclear matter density distributions and the root-mean-square nuclear matter radii were deduced from the measured cross sections using the Glauber multiple-scattering theory. A possible neutron halo structure in C, C and C is discussed. The obtained data show evidence for a halo structure in the C nucleus.

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