Bulletin of the American Physical Society
6th Joint Meeting of the APS Division of Nuclear Physics and the Physical Society of Japan
Sunday–Friday, November 26–December 1 2023; Hawaii, the Big Island
Session DB03: CEU Poster Session & Physical Review Reception (2:00 P.M. - 4:00 P.M. HST)
2:00 PM,
Wednesday, November 29, 2023
Hilton Waikoloa Village
Room: Lagoon Lanai
Chair: Shelly Lesher, University of Wisconsin La Crosse
Abstract: DB03.00093 : Analyzing Nickel Cross-Sections for Applications in DT Fusion Research*
Presenter:
Anna M Lamas Nino
Author:
Anna M Lamas Nino
breakthroughs at NIF, progress is still needed. One possible diagnostic tool is to use activation foils to search
for any net center-of-mass velocity of the plasma. Since neutrons produced by DT fusion have En = 14.1 MeV,
reactions with a strong energy dependence in this range, such as 58Ni(n,2n)57Ni and 58Ni(n,p)58Co, can measure
small alterations of the neutron energy.
Purpose: Measuring the production cross-sections of the aforementioned reactions, 58Co/57Ni, can be used to
reveal insights about the mean neutron energy and velocity of the DT fusion plasma.
Methods: A deuteron beam was created at the TUNL tandem accelerator, which then hit a tritiated target.
Activation foils were placed at varying degrees from incoming deuteron beam. Neutron activation occurred for
10 hours. A HPGe detector was then used to identify the decays of 57Ni and 58Co. The cross-sections were
calculated.
Results: The cross-sections of the two reactions agree with the evaluations within uncertainty. In addition, the
ratio of cross-sections is reported with reduced uncertainty.
Conclusions: The production cross-sections for 57Ni and 58Co were measured at four incident neutron energies
around 14.1 MeV. This nuclear data may be used as a possible diagnostic tool for measuring small alterations in
the mean center-of-mass velocity DT plasmas.
This work was supported in part by the U.S. Department of Energy under grant DE-SC0022545.
*This work was supported in part by the U.S. Department of Energy under grant DE-SC0022545.
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