Published May 1974 | Version v1
Journal article

Nuclear magnetic moments of very short-lived states via the transient-field implantation perturbed-angular-correlation technique

  • 1. Rutgers University, New Brunswick, New Jersey 08903

Description

The Lindhard and Winther equations for the transient magnetic field effect have been numerically integrated with the inclusion of a decays-in-flight correction and using the best available stopping power formulas. The calculations are carried out for an iron host and curves are generated from which the transient-field angular shift may be predicted for any Z>12 to an accuracy of ∼ 20%. The transient-field calculations are employed in the analysis of angular shift data for the first 2⁺ states of ¹⁰⁴Pd, ¹⁰⁶Pd, ¹⁰⁸Pd, and ¹¹⁰Pd isotopes implanted into an Fe0.8-Co0.2 alloy and for ⁵⁴Fe and ⁵⁶Fe implanted into iron. The g factors of the six isotopes are obtained and the hyperfine field of Pd in the alloy is determined. Evidence is presented which suggests that the hyperfine fields measured in oxygen beam implantation perturbed-angular-correlation experiments for Ru, Pd, Cd, and Te in Fe are consistently reduced from the hyperfine fields measured by other methods. In light of these results and the decays-in-flight corrections to the transient-field theory, angular shift data of previous workers on even-even isotopes of Ge, Ru, Pd, Cd, and Te have been reanalyzed. With the exception of ⁷⁰Ge, all the g factors are in agreement with a collective model.[NUCLEAR REACTIONS ce, transient-field IMPAC technique. Measured γ(θ), deduced hyperfine fields, g(2⁺) for ¹⁰⁴Pd, ¹⁰⁶Pd, ¹⁰⁸Pd, ¹¹⁰Pd in Fe0.8-Co0.2, for ⁵⁴,⁵⁶Fe in Fe. Reanalysis of previous g(2⁺) for ⁷⁰Ge, ⁷²Ge, ⁷⁴Ge, ⁷⁶Ge, ⁹⁸Ru, ¹⁰⁰Ru, ¹⁰²Ru, ¹⁰⁴Ru, ¹⁰⁴Pd, ¹⁰⁶Pd, ¹⁰⁸Pd, ¹¹⁰Pd, ¹¹⁰Cd, ¹¹²Cd, ¹¹⁴Cd, ¹¹⁶Cd, ¹²⁰Te, ¹²²Te, ¹²⁴Te, ¹²⁶Te, ¹²⁸Te, ¹³⁰Te.]

Additional details

Identifiers

Publishing Information

Journal Title
Physical Review C
Journal Volume
9
Journal Issue
5
Series
Phys. Rev., C.
Journal Page Range
1954-1964
ISSN
0556-2813

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