Impact of d-Li source and (n,xγ) reaction gammas on the nuclear responses in the IFMIF test modules
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering
Reference13 articles.
1. The International IFMIF Team, IFMIF Comprehensive Design Report, IEA Report, December 2003.
2. P. Garin, Main baseline of IFMIF/EVEDA project, this conference.
3. Advanced Monte Carlo procedure for the IFMIF d-Li neutron source term based on evaluated cross section data
4. Evaluation of d+6,7Li data for deuteron incident energies up to 50MeV;Pereslavtsev;Nucl. Inst. Meth. Phys. Res.,2008
5. Neutronics and activation characteristics of the international fusion material irradiation facility;Simakov;Fusion Eng. Des.,2005
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1. Estimation of nuclear properties in a deuteron–lithium target using JENDL/DEU-2020 for IFMIF and similar irradiation facilities;Fusion Engineering and Design;2024-05
2. High-Flux Neutron Generator Based on Laser-Driven Collisionless Shock Acceleration;Physical Review Letters;2023-07-12
3. Generation of high-energy (>15 MeV) neutrons using short pulse high intensity lasers;Physics of Plasmas;2012-09
4. Status of the McDeLicious Approach for the D-Li Neutron Source Term Modeling in IFMIF Neutronics Calculations;Fusion Science and Technology;2012-08
5. Displacement damage induced in iron by gammas and neutrons under irradiation in the IFMIF test cell;Journal of Nuclear Materials;2011-10
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