Bassauer S, Von Neumann-Cosel P, Reinhard PG, Tamii A, Adachi S, Bertulani CA, Chan PY, D'Alessio A, Fujioka H, Fujita H, Fujita Y, Gey G, Hilcker M, Hoang TH, Inoue A, Isaak J, Iwamoto C, Klaus T, Kobayashi N, Maeda Y, Matsuda M, Nakatsuka N, Noji S, Ong HJ, Ou I, Pietralla N, Ponomarev VY, Reen MS, Richter A, Singer M, Steinhilber G, Sudo T, Togano Y, Tsumura M, Watanabe Y, Werner V (2020)
Publication Type: Journal article
Publication year: 2020
Book Volume: 102
Journal Issue: 3
DOI: 10.1103/PhysRevC.102.034327
Background: There is renewed interest in electric dipole strength distributions for a variety of reasons including the extraction of the dipole polarizability related to properties of the symmetry energy and a measure for the neutron skin thickness, understanding the structure of low-energy E1 strength in nuclei with neutron excess, and establishing the systematics of the isovector giant dipole resonance (IVGDR). Inelastic proton scattering at energies of a few hundred MeV and very forward angles including 0 degrees has been established as a tool for the study of electric and magnetic dipole strength distributions in nuclei.
APA:
Bassauer, S., Von Neumann-Cosel, P., Reinhard, P.-G., Tamii, A., Adachi, S., Bertulani, C.A.,... Werner, V. (2020). Electric and magnetic dipole strength in Sn-112,114,116,118,120,(124). Physical Review C - Nuclear Physics, 102(3). https://doi.org/10.1103/PhysRevC.102.034327
MLA:
Bassauer, S., et al. "Electric and magnetic dipole strength in Sn-112,114,116,118,120,(124)." Physical Review C - Nuclear Physics 102.3 (2020).
BibTeX: Download