Extraction of the non-spin- and spin-transfer isovector responses via the $^{12}\mathrm{C}(^{10}\mathrm{Be},{}^{10}\mathrm{B}+\gamma)^{12}\mathrm{B}$ reaction
Sk M. Ali, C. Maher, R. G. T. Zegers, M. Scott, D. Bazin, M. Bowry, B. A. Brown, C. M. Campbell, A. Gade, S. Gales, U. Garg, M. N. Harakeh, E. Kwan, C. Langer, C. Loelius, C. Morse, S. Noji, T. Redpath, H. Sakai, M. Sasano, C. Sullivan, and D. Weisshaar

TL;DR
This study demonstrates a novel method to separately extract non-spin- and spin-transfer isovector responses in $^{12}$B using a gamma-ray detection technique combined with charge-exchange reactions, validated against existing data.
Contribution
The paper introduces a new experimental approach combining gamma-ray tracking and charge-exchange reactions to distinguish isovector responses in nuclei, enabling detailed analysis of nuclear excitations.
Findings
Successful extraction of non-spin- and spin-transfer responses up to 50 MeV in $^{12}$B.
Validation of the method through consistency with existing charge-exchange data.
Potential for high-precision studies at future rare-isotope beam facilities.
Abstract
The isovector response in B was investigated via the C(,+)B reaction at . By utilizing the -decay properties of the 1.74 MeV and 0.718 MeV states in , the separate extraction of the non-spin-transfer () and spin-transfer () isovector responses up to an excitation energy of 50 MeV in B in a single measurement is demonstrated. The experimental setup employed the S800 spectrometer to detect and analyze the ejectiles and the Gamma-Ray Energy Tracking In-beam Nuclear Array (GRETINA) for obtaining the Doppler-reconstructed spectrum for -rays emitted in-flight by . A C foil was placed at the pivot point of the spectrograph. The B reaction product was not detected.…
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