Spallation reactions. A successful interplay between modeling and applications
arXiv:1505.03282 · doi:10.1140/epja/i2015-15068-1
Abstract
The spallation reactions are a type of nuclear reaction which occur in space by interaction of the cosmic rays with interstellar bodies. The first spallation reactions induced with an accelerator took place in 1947 at the Berkeley cyclotron (University of California) with 200 MeV deuterons and 400 MeV alpha beams. They highlighted the multiple emission of neutrons and charged particles and the production of a large number of residual nuclei far different from the target nuclei. The same year R. Serber describes the reaction in two steps: a first and fast one with high-energy particle emission leading to an excited remnant nucleus, and a second one, much slower, the de-excitation of the remnant. In 2010 IAEA organized a worskhop to present the results of the most widely used spallation codes within a benchmark of spallation models. If one of the goals was to understand the deficiencies, if any, in each code, one remarkable outcome points out the overall high-quality level of some models and so the great improvements achieved since Serber. Particle transport codes can then rely on such spallation models to treat the reactions between a light particle and an atomic nucleus with energies spanning from few tens of MeV up to some GeV. An overview of the spallation reactions modeling is presented in order to point out the incomparable contribution of models based on basic physics to numerous applications where such reactions occur. Validations or benchmarks, which are necessary steps in the improvement process, are also addressed, as well as the potential future domains of development. Spallation reactions modeling is a representative case of continuous studies aiming at understanding a reaction mechanism and which end up in a powerful tool.
59 pages, 54 figures, Review
References in corpus (11)
- Towards a More Complete and Accurate Experimental Nuclear Reaction Data Library (EXFOR): International Collaboration Between Nuclear Reaction Data Centres (NRDC)
- Extension of the Liège Intranuclear-Cascade model to reactions induced by light nuclei
- Spallation Residues in the Reaction 56Fe + p at 0.3, 0.5, 0.75, 1.0 and 1.5 A GeV
- Tracing the evolution of the symmetry energy of hot nuclear fragments from the compound nucleus towards multifragmentation
- Cross-sections for nuclide production in 56Fe target irradiated by 300, 500,750, 1000, 1500, and 2600 MeV protons compared with data on hydrogen target irradiation by 300, 500, 750, 1000, and 1500 MeV/nucleon 56Fe ions
- Improving proton-induced one-nucleon removal in intranuclear cascade
- Validation and Verification of MCNP6 Against Intermediate and High-Energy Experimental Data and Results by Other Codes
- Competition of coalescence and "fireball" processes in nonequilibrium emission of light charged particles from p+Au collisions
- Non-equilibrium emission of complex fragments from p+Au collisions at 2.5 GeV proton beam energy
- MCNP6 fragmentation of light nuclei at intermediate energies
- HARP-CDP hadroproduction data: Comparison with FLUKA and GEANT4 simulations
Cited by in corpus (13)
- Coherent Elastic Neutrino-Nucleus Scattering at the European Spallation Source
- Study of final-state interactions of protons in neutrino-nucleus scattering with INCL and NuWro cascade models
- Production Rate Measurement of Tritium and Other Cosmogenic Isotopes in Germanium with CDMSlite
- Cosmogenic activation in double beta decay experiments
- Estimating model bias over the complete nuclide chart with sparse Gaussian processes at the example of INCL/ABLA and double-differential neutron spectra
- Neutron-rich rare isotope production from projectile fission of heavy beams in the energy range of 20 MeV/nucleon
- Isomer production studied with simultaneous decay curve analysis for alpha-particle induced reactions on natural platinum up to 29 MeV
- Final-state interactions in neutrino-induced proton knockout from argon in MicroBooNE
- Application of Origen2.1 in the decay photon spectrum calculation of spallation products
- Light fragment and neutron emission in high-energy proton induced spallation reactions
- Pairing-energy coefficients of neutron-rich fragments in spallation reactions
- The MARS15-based FermiCORD code system for calculation of the accelerator-induced residual dose
- Influence of secondary neutrons on alpha-particle induced reaction cross section measurement below the Coulomb barrier