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Phys. Rev. 97, 975 – Published 15 February, 1955
DOI: https://doi.org/10.1103/PhysRev.97.975
Abstract
The known 65-second activity in is shown to have an intense 650±15 kev gamma ray. The 65-second activity is therefore assigned to a 650±15 kev isomeric level which decays by a gamma transition 70±10 percent of the time and by positron emission 30±10 percent of the time. There are at least two higher-energy gamma rays with energies 1.22±0.03 Mev and 1.55±0.03 Mev. Existent () and () data are used to show that 65-sec., 650-kev is a state and that 15.5-min is a state. This assignment implies that the neutron binding energy of is 12.5 Mev.
References (17)
- W. Bothe and W. Gentner, Naturwiss. 25, 191 (1937)
- F. A. Heyn, Nature 139, 842 (1937)
- R. Sagane, Phys. Rev. 53, 492 (1938)
- Sagane, Kojima, Miyamoto, and Ikawa, Phys. Rev. 54, 542 (1938) ibid.57, 1179 (1940)
- D. N. Kundu and M. L. Pool, Phys. Rev. 76, 183(A) (1949)
- R. B. Duffield and J. D. Knight, Phys. Rev. 76, 573 (1949)
- H. Waffler and O. Hirzel, Helv. Phys. Acta 21, 200 (1948)
- Bernstein, Chase, and Schardt, Rev. Sci. Instr. 24, 437 (1953)
- Katz, Baker, and Montalbetti, Can. J. Phys. 31, 250 (1953)
- R. B. Duffield (private communication)
- Brolley, Fowler, and Schlacks, Phys. Rev. 88, 618 (1952)
- J. E. Brolley, Jr., Phys. Rev. 89, 877 (1953)
- M. Goldhaber and R. D. Hill, Revs. Modern Phys. 24, 179 (1952)
- J. M. Blatt and V. F. Weisskopf, Theoretical Nuclear Physics (John Wiley & Sons, Inc., New York, 1952), p. 361
- P. Axel and J. D. Fox (to be published)
- [14], p. 627
- S. A. Moszkowski, Phys. Rev. 83, 1071 (1951) private communication