Angular Distribution of Gamma Rays from Coulomb Excitation

F. K. McGowan and P. H. Stelson
Phys. Rev. 99, 127 – Published 1 July 1955
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Abstract

The angular distributions of gamma rays with respect to the incident proton beam on a thick target have been measured for gamma rays following Coulomb excitation in Pt194,196, Au197, Ta181, Ag107,109, Pd106, Pd108, Pd110, and Rh103. The observed angular distributions deviate considerably from the semiclassical theory of angular distributions of gamma rays following Coulomb excitation given by Alder and Winther. Empirical curves of energy-dependent coefficients aν(ξ) for a thick target are obtained from the results for Pt194,196 and Pd106. With these empirical coefficients, information on the spin sequences and the character of the gamma transitions are deduced from the angular distribution measurements in the odd mass nuclei. The spin sequences are as follows: 72(E2)32 and 52(E2+M1)32 with δγ=0.75 (where δγ2=E2M1) for the 550- and 277-kev transitions, respectively, in Au197; 112(E2)72 and 112(E2+M1)92 with δγ=0.51 for the 303- and 166-kev transitions, respectively, in Ta181; 52(E2)12 and 32(E2+M1)12 with δγ=0.19 or 1.14 for the 427- and 325-kev transitions, respectively, in Ag107,109; and 52(E2)12 and 32(E2+M1)12 with δγ=0.18 or 1.17 for the 365- and 305-kev transitions, respectively, in Rh103.

  • Received 30 March 1955

DOI:https://doi.org/10.1103/PhysRev.99.127

©1955 American Physical Society

Authors & Affiliations

F. K. McGowan and P. H. Stelson

  • Oak Ridge National Laboratory, Oak Ridge, Tennessee

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Issue

Vol. 99, Iss. 1 — July 1955

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