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Determining neutron capture cross sections with the Surrogate Reaction Technique: Measuring decay probabilities with STARS

Authors :
Larry Ahle
L. A. Bernstein
H. Ai
V. Zamfir
J. A. Caggiano
H. Amro
F. S. Dietrich
D. A. Meyer
J. J. Ressler
Andreas Martin Heinz
Mario Babilon
C. Plettner
Christian Forssén
Richard Hughes
C. W. Beausang
E. A. McCutchan
Jutta Escher
J. R. Cooper
J. A. Church
Source :
ResearcherID
Publication Year :
2005
Publisher :
Elsevier BV, 2005.

Abstract

Neutron-induced reaction cross sections are sometimes difficult to measure due to target or beam limitations. For two-step reactions proceeding through an equilibrated intermediate state, an alternate "surrogate reaction" technique [J.D. Cramer and H.C. Britt, Nucl. Sci. Eng. 41, 177 (1970), H.C. Britt and J.B. Wilhelmy, Nucl. Sci. Eng. 72, 222 (1979), W.Younes and H.C. Britt, Phys. Rev. C 67, 024610 (2003)] can be applicable, and is currently undergoing investigation at LLNL. Measured decay probabilities for the intermediate nucleus formed in a light-ion reaction can be combined with optical-model calculations for the formation of the same intermediate nucleus via the neutron-induced reaction. The result is an estimation for overall (n,γ/n/2n) cross sections. As a bench-mark, the reaction 92Zr(α, α ′ ), surrogate for n+91Zr, was studied at the A.W. Wright Nuclear Structure Laboratory at Yale. Particles were detected in the silicon telescope STARS (Silicon Telescope Array for Reaction Studies) and γ-ray energies measured with germanium clover detectors from the YRAST (Yale Rochester Array for SpecTroscopy) ball. The experiment and preliminary observations will be discussed.

Details

ISSN :
03759474
Volume :
758
Database :
OpenAIRE
Journal :
Nuclear Physics A
Accession number :
edsair.doi.dedup.....098b29688db663ced10615631e80ef18