Constraints on neutron skin thickness in 208Pb and density-dependent symmetry energy
arXiv:1504.02217 · doi:10.1103/PhysRevC.91.034315
Abstract
Accurate knowledge about the neutron skin thickness in Pb has far-reaching implications for different communities of nuclear physics and astrophysics. Yet, the novel Lead Radius Experiment (PREX) did not yield stringent constraint on the recently. We employ a more practicable strategy currently to probe the neutron skin thickness of Pb based on a high linear correlation between the and , where and are the symmetry energy (coefficient) of nuclear matter at saturation density and of Pb. An accurate thus places a strong constraint on the . Compared with the parity-violating asymmetry in the PREX, the reliably experimental information on the is much more easily available attributed to a wealth of measured data on nuclear masses and on decay energies. The density dependence of the symmetry energy is also well constrained with the . Finally, with a `tomoscan' method, we find that one just needs to measure the nucleon densities in Pb starting from fm to obtain the in hadron scattering experiments, regardless of its interior profile that is hampered by the strong absorption.
13 pages, 4 figures
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