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Photo-neutron reaction cross-sections for Zr-nat in the bremsstrahlung end-point energies of 12-16 and 45-70 MeV SCIE SCOPUS

Title
Photo-neutron reaction cross-sections for Zr-nat in the bremsstrahlung end-point energies of 12-16 and 45-70 MeV
Authors
Naik, HKim, GNSchwengner, RKim, KZaman, MYang, SCLee, MWShin, SGGey, YMassarczyk, RJohn, RJunghans, AWagner, AGoswami, ACho, MH
Date Issued
2014-05-09
Publisher
Springer
Abstract
The Zr-nat(gamma, xn)Zr89-86 reaction cross-sections were experimentally determined at the bremsstrahlung end-point energies of 12, 14, 16, 45, 50, 55, 60 and 70 MeV by activation and off-line gamma-ray spectrometric technique using the 20 MeV electron linac (ELBE) at the Helmholtz-Zentrum Dresden-Rossendorf (HZDR), Dresden, Germany, and the 100 MeV electron linac at the Pohang Accelerator Laboratory (PAL), Pohang, Korea. The Zr-nat(gamma, xn)Zr89-86 reaction cross-sections as a function of photon energy were also calculated using the TALYS 1.4 computer code. The flux-weighted average cross-sections at the end-point energies of 12-16 and 45-70 MeV were obtained using the literature and the TALYS calculation data based on mono-energetic photons and are found to be in good agreement with the present data. It was also found that the present data and the flux-weighted literature and theoretical values for the Zr-nat (gamma, xn)Zr89-86 reaction cross-sections increase from the threshold values to a certain energy, where other reaction channels open. This indicates the role of excitation energy. However, the increasing trend of the Zr-nat(gamma, xn)Zr-89,Zr-88 reaction cross-sections are sharper from the threshold value up to end-point bremsstrahlung energies of 17-22 MeV compared to the same for the Zr-nat(gamma, xn)Zr-87,Zr-86 reactions. This is due to the Giant Dipole Resonance (GDR) effect besides the role of excitation energy. After a certain value, the individual Zr-nat(gamma, xn) reaction cross-sections decrease with the increase of bremsstrahlung energy due to opening of other reactions, which indicates partitioning of energy in different channels.
URI
https://oasis.postech.ac.kr/handle/2014.oak/27311
DOI
10.1140/EPJA/I2014-14083-0
ISSN
1434-6001
Article Type
Article
Citation
EUROPEAN PHYSICAL JOURNAL A, vol. 50, no. 5, page. 83-1 - 83-13, 2014-05-09
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조무현CHO, MOO HYUN
Div. of Advanced Nuclear Enginrg
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