Studies of nuclei close to {sup 132}Sn using single-neutron transfer reactions

Neutron transfer reactions were performed in inverse kinematics using radioactive ion beams of {sup 132}Sn, {sup 130}Sn, and {sup 134}Te and deuterated polyethylene targets. Preliminary results are presented. The Q-value spectra for {sup 133}Sn, {sup 131}Sn and {sup 135}Te reveal a number of previou...

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Hauptverfasser: Jones, K. J., Department of Physics and Astronomy, Rutgers University, New Brunswick, NJ 08903, Pain, S. D., Physics Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, Kozub, R. L., Howard, J. A., O'Malley, P. D., Paulauskas, S. V., Shriner, J. F., Sissom, D. J., Adekola, A. S., Bardayan, D. W., Blackmon, J. C., Liang, J. F., Nesaraja, C. D., Shapira, D., Smith, M. S., Catford, W. N., Harlin, C., Patterson, N. P., Swan, T. P., Wilson, G. L.
Format: Tagungsbericht
Sprache:eng
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Zusammenfassung:Neutron transfer reactions were performed in inverse kinematics using radioactive ion beams of {sup 132}Sn, {sup 130}Sn, and {sup 134}Te and deuterated polyethylene targets. Preliminary results are presented. The Q-value spectra for {sup 133}Sn, {sup 131}Sn and {sup 135}Te reveal a number of previously unobserved peaks. The angular distributions are compatible with the expected lf{sub 7/2} nature of the ground state of {sup 133}Sn, and 2p{sub 3/2} for the 3.4 MeV state in {sup 131}Sn.
ISSN:0094-243X
1551-7616
DOI:10.1063/1.3108775