arXiv · 0801.1529
Low excitation structure of $^{10}$B probed by scattering of electron and of 197 MeV polarized protons
Abstract
Cross-section and analyzing power data from 197 MeV $(p,p')$ scattering and longitudinal and transverse form factors for electron scattering to low lying states in $^{10}$B have been analyzed as tests of the structure of the nuclear states when they are described using a no-core $(0+2)\hbarω$ shell model. While the results obtained from the shell model clearly show the need of other elements, three-body forces in particular, to explain the observed spectrum, the reasonable level of agreement obtained in the analyses of the scattering data suggest that the wavefunctions from our shell model using only a two-body potential are credible. Any changes to the wavefunctions with the introduction of three-body forces in the shell model Hamiltonian should therefore be relatively minor.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
K. Amos, S. Karataglidis, Y. J. Kim. 2008-02-20. Low excitation structure of $^{10}$B probed by scattering of electron and of 197 MeV polarized protons. https://doi.org/10.1016/j.nuclphysa.2010.01.162
Cite the original work for its findings. Save a collection to share your selection of sources.