Fragmentation of {sup 14}N, {sup 16}O, {sup 20}Ne, and {sup 24}Mg nuclei at 290 to 1000 MeV/nucleon
Journal Article
·
· Physical Review. C, Nuclear Physics
- Southwest Research Institute, Boulder, Colorado 80302 (United States)
We report fragmentation cross sections measured at 0 deg. for beams of {sup 14}N, {sup 16}O, {sup 20}Ne, and {sup 24}Mg ions, at energies ranging from 290 MeV/nucleon to 1000 MeV/nucleon. Beams were incident on targets of C, CH{sub 2}, Al, Cu, Sn, and Pb, with the C and CH{sub 2} target data used to obtain hydrogen-target cross sections. Using methods established in earlier work, cross sections obtained with both large-acceptance and small-acceptance detectors are extracted from the data and, when necessary, corrected for acceptance effects. The large-acceptance data yield cross sections for fragments with charges approximately half of the beam charge and above, with minimal corrections. Cross sections for lighter fragments are obtained from small-acceptance spectra, with more significant, model-dependent corrections that account for the fragment angular distributions. Results for both charge-changing and fragment production cross sections are compared to the predictions of the Los Alamos version of the quark gluon string model (LAQGSM) as well as the NASA Nuclear Fragmentation (NUCFRG2) model and the Particle and Heavy Ion Transport System (PHITS) model. For all beams and targets, cross sections for fragments as light as He are compared to the models. Estimates of multiplicity-weighted helium production cross sections are obtained from the data and compared to PHITS and LAQGSM predictions. Summary statistics show that the level of agreement between data and predictions is slightly better for PHITS than for either NUCFRG2 or LAQGSM.
- OSTI ID:
- 21499520
- Journal Information:
- Physical Review. C, Nuclear Physics, Journal Name: Physical Review. C, Nuclear Physics Journal Issue: 3 Vol. 83; ISSN 0556-2813; ISSN PRVCAN
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
73 NUCLEAR PHYSICS AND RADIATION PHYSICS
ALKALINE EARTH ISOTOPES
ALUMINIUM
AMINES
ANGULAR DISTRIBUTION
ANTI-INFECTIVE AGENTS
ANTIMICROBIAL AGENTS
AZINES
BEAMS
BOSONS
CARBON
CHARGED PARTICLES
CHLORIDES
CHLORINE COMPOUNDS
COMPOSITE MODELS
COPPER
CROSS SECTIONS
DISTRIBUTION
DRUGS
ELEMENTS
ENERGY RANGE
EVEN-EVEN NUCLEI
EXTENDED PARTICLE MODEL
FERMIONS
GLUONS
HALIDES
HALOGEN COMPOUNDS
HEAVY IONS
HETEROCYCLIC COMPOUNDS
IONS
ISOTOPES
LEAD
LIGHT NUCLEI
MAGNESIUM 24
MAGNESIUM ISOTOPES
MATHEMATICAL MODELS
METALS
METHYLENE BLUE
MEV RANGE
MEV RANGE 100-1000
NEON 20
NEON ISOTOPES
NITROGEN 14
NITROGEN ISOTOPES
NONMETALS
NUCLEAR FRAGMENTATION
NUCLEAR REACTIONS
NUCLEI
NUCLEON BEAMS
ODD-ODD NUCLEI
ORGANIC COMPOUNDS
ORGANIC NITROGEN COMPOUNDS
ORGANIC SULFUR COMPOUNDS
OXYGEN 16
OXYGEN ISOTOPES
PARTICLE BEAMS
PARTICLE MODELS
PHENOTHIAZINES
QUARK MODEL
QUARKS
SIMULATION
STABLE ISOTOPES
STRING MODELS
TIN
TRANSITION ELEMENTS
ALKALINE EARTH ISOTOPES
ALUMINIUM
AMINES
ANGULAR DISTRIBUTION
ANTI-INFECTIVE AGENTS
ANTIMICROBIAL AGENTS
AZINES
BEAMS
BOSONS
CARBON
CHARGED PARTICLES
CHLORIDES
CHLORINE COMPOUNDS
COMPOSITE MODELS
COPPER
CROSS SECTIONS
DISTRIBUTION
DRUGS
ELEMENTS
ENERGY RANGE
EVEN-EVEN NUCLEI
EXTENDED PARTICLE MODEL
FERMIONS
GLUONS
HALIDES
HALOGEN COMPOUNDS
HEAVY IONS
HETEROCYCLIC COMPOUNDS
IONS
ISOTOPES
LEAD
LIGHT NUCLEI
MAGNESIUM 24
MAGNESIUM ISOTOPES
MATHEMATICAL MODELS
METALS
METHYLENE BLUE
MEV RANGE
MEV RANGE 100-1000
NEON 20
NEON ISOTOPES
NITROGEN 14
NITROGEN ISOTOPES
NONMETALS
NUCLEAR FRAGMENTATION
NUCLEAR REACTIONS
NUCLEI
NUCLEON BEAMS
ODD-ODD NUCLEI
ORGANIC COMPOUNDS
ORGANIC NITROGEN COMPOUNDS
ORGANIC SULFUR COMPOUNDS
OXYGEN 16
OXYGEN ISOTOPES
PARTICLE BEAMS
PARTICLE MODELS
PHENOTHIAZINES
QUARK MODEL
QUARKS
SIMULATION
STABLE ISOTOPES
STRING MODELS
TIN
TRANSITION ELEMENTS