Excitation of isovector giant resonances in Al27 by heavy ion charge exchange reaction
S. Nakayama, T. Yamagata, Kazuya Yuasa, M. Tanaka, Makoto Inoue, T. Itahashi, Hiroshi Ogata
Abstract
S. Nakayama, T. Yamagata, Kazuya Yuasa, M. Tanaka, Makoto Inoue, T. Itahashi, Hiroshi Ogata
Abstract
Excitation of isovector giant resonances in $^{27}\mathrm{Al}$ was studied by using the $^{27}\mathrm{Al}$${(}^{7}$Li, $^{7}\mathrm{Be}$${)}^{27}$Mg reaction at incident energies of 100, 150, and 180 MeV. We observed the analog of the giant dipole resonance at ${E}_{x}$=14.3 MeV in $^{27}\mathrm{Mg}$. From the observed excitation function, we suggest that a peak at ${E}_{x}$=9.5 MeV is a resonance with a higher multipolarity than one. In the excitation energy region higher than the giant dipole resonance, no resonance was observed.
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Excitation of isovector giant resonances in $^{27}\mathrm{Al}$ was studied by using the $^{27}\mathrm{Al}$${(}^{7}$Li, $^{7}\mathrm{Be}$${)}^{27}$Mg reaction at incident energies of 100, 150, and 180 MeV. We observed the analog of the giant dipole resonance at ${E}_{x}$=14.3 MeV in $^{27}\mathrm{Mg}$. From the observed excitation function, we suggest that a peak at ${E}_{x}$=9.5 MeV is a resonance with a higher multipolarity than one. In the excitation energy region higher than the giant dipole resonance, no resonance was observed.
Key concepts: Isovector, Excitation, Physics, Resonance (particle physics), Dipole, Giant resonance, Atomic physics, Nuclear reaction