TY - JOUR
T1 - Forbidden (p,d) pickup to stretched states of Al26
AU - Peterson, R. J.
AU - Yasue, M.
AU - Tanaka, M. H.
AU - Hasegawa, T.
AU - Nisimura, N.
AU - Ohnuma, H.
AU - Shimizu, H.
AU - Ieki, K.
AU - Toyokawa, H.
AU - Iwase, M.
AU - Iimura, J.
AU - Hayakawa, S. I.
N1 - Funding Information:
This research was supported in part by the National Aeronautics and Space Administration under Contract No. NAS8-37259.
PY - 1988
Y1 - 1988
N2 - The Al27(p,d)26Al reaction has been studied at Ep=35 MeV with high resolution to populate known 5- and 6- stretched states of d5/2-holef7/2- particle structure, and to obtain the weak spectroscopic factors. These are compared to results also obtained for the Mg26(p,d)25Mg and Mg26(3He,)25Mg reactions to known (7/2- states. An analysis of these results in the Nilsson scheme exposes the structure of the 6- stretched states and offers an understanding of the fragmentation of M6 stretched transition strength in Mg26, as seen by electron scattering. This work is part of a consistent study of many nuclear reactions to stretched states in mass 26, to serve as a test case for these important single-particle modes.
AB - The Al27(p,d)26Al reaction has been studied at Ep=35 MeV with high resolution to populate known 5- and 6- stretched states of d5/2-holef7/2- particle structure, and to obtain the weak spectroscopic factors. These are compared to results also obtained for the Mg26(p,d)25Mg and Mg26(3He,)25Mg reactions to known (7/2- states. An analysis of these results in the Nilsson scheme exposes the structure of the 6- stretched states and offers an understanding of the fragmentation of M6 stretched transition strength in Mg26, as seen by electron scattering. This work is part of a consistent study of many nuclear reactions to stretched states in mass 26, to serve as a test case for these important single-particle modes.
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U2 - 10.1103/PhysRevC.38.2026
DO - 10.1103/PhysRevC.38.2026
M3 - Article
AN - SCOPUS:34547480848
SN - 0556-2813
VL - 38
SP - 2026
EP - 2035
JO - Physical Review C - Nuclear Physics
JF - Physical Review C - Nuclear Physics
IS - 5
ER -