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Measurement of the {208}Pb(n,p){208}Tl reaction cross section between 30 and 70 MeV neutron energy

Coszach R., Duhamel P., Hajjami S. El, Galster W., Leleux P., Meulders J.-P., Vanhorenbeeck J., Vervier J.

Phys. Rev. C: Nucl. Phys., vol: 61, num: 5, 22(3), published: , US


   Nuclear reactor physics.
      Neutron physics. Nuclear data.
         Neutron absorption (total absorption, radiative capture, activation, (n, p) and (n, α) reactions, capture gammas etc.).

   Nuclear reactor physics.
      Nuclear power. Reliability and safety problems. Engineering problems.
         Nuclear energy and radiation utilization. Description and parameters of reactors, nuclear power stations and other nuclear installations.
            Electro-nuclear installations (nuclear fuel and radioactive wastes treatment, power production, isotopes production, etc.).

   Nuclear reactor physics.
      Experimental investigations (methods, results, analysis).
         Experimental techniques and methods. Planning of experiment and experimental data treatment.
            Particle sources.

   Atomic nucleus.
      Penetration of nuclear particles and gamma-quanta through matter.
         Penetration of neutrons through matter.
            Secondary effects.

   Atomic nucleus.
      Nuclear reactions.
         Nuclear reactions induced by neutrons (experiment).
            Neutron-nucleus interactions at 100 keV<E≤ 200 MeV.
               (n, p) reactions.

   Atomic nucleus.
      Nuclear reactions.
         Nuclear reactions induced by nucleons (theory).
            Inelastic nucleon scattering and (n, p), (p, n) (classification by reaction types).
               (n, p) reactions.