Matches in SemOpenAlex for { <https://semopenalex.org/work/W1978670483> ?p ?o ?g. }
Showing items 1 to 92 of
92
with 100 items per page.
- W1978670483 endingPage "1394" @default.
- W1978670483 startingPage "1382" @default.
- W1978670483 abstract "An intranuclear cascade model for reactions of pions and nucleons with complex nuclei that should cover the energy range from about 50 MeV to about 1000 GeV has been developed. The model includes the effect of a diffuse nuclear surface, the Fermi motion of the bound nucleons within the nucleus, the exclusion principle, a local potential for nucleons, a localized reduction in the density of the nucleus during the development of the cascade, and the sequencing of the events correctly with time. Theoretical results from the model are compared with experimental data over the energy range ensuremath{sim} 3-1000 GeV. Within the cascade model, the equations that are used to represent the pion multiplicity from the reactions of nucleons and pions with the individual nucleons of the nucleus underestimates the number of shower particles produced by these individual nucleon interactions. In spite of this the predicted number of shower particles escaping from the nucleus, for 100-GeV nuclear interactions, is overestimated by about 25% for light nuclei to about 60% for heavy nuclei. The agreement for the number of escapes from the nucleus is somewhat better at lower interaction energies (ensuremath{sim} 10-20 GeV). Some of the major trends in the observed high energy data are predicted quite well. These include the energy independence of (a) the number of black tracks produced at interaction energies above 5 GeV, (b) the number of shower particles produced above 100 GeV, and (c) the radionuclides produced above 10 GeV. Other trends that are predicted fairly well are the small mass dependence of the shower particle multiplicity (factor of 2 increase predicted from carbon to lead; factor of 1.5 measured), and the change in the angular dependence of the multiplicity with mass. In absolute comparisons, the predicted total reaction cross sections are in good agreement with experimental data, and the cross sections for the production of radionuclides are in fair agreement.NUCLEAR REACTIONS Theoretical, intranuclear cascade method, ${ensuremath{sigma}}_{t}(A)$ for $p$ and $ensuremath{pi}$, ${〈n〉}_{mathrm{shower}}$ and ${〈n〉}_{mathrm{black}}$ vs ${E}_{ensuremath{pi}}$, $ensuremath{sigma}({ensuremath{theta}}_{ensuremath{pi}})ensuremath{Delta}{ensuremath{theta}}_{ensuremath{pi}}$ vs $A$, $ensuremath{sigma}({E}_{ensuremath{pi}},{E}_{p}:ensuremath{theta})$ for $p$ on Al, radiochemical $ensuremath{sigma}'mathrm{s}$ for 11-and 300-GeV $p$ on $^{59}mathrm{Co}$. All compared with experiment." @default.
- W1978670483 created "2016-06-24" @default.
- W1978670483 creator A5020664891 @default.
- W1978670483 creator A5034062214 @default.
- W1978670483 creator A5056639455 @default.
- W1978670483 creator A5066485156 @default.
- W1978670483 creator A5069390319 @default.
- W1978670483 date "1978-04-01" @default.
- W1978670483 modified "2023-09-24" @default.
- W1978670483 title "High energy (<mml:math xmlns:mml=http://www.w3.org/1998/Math/MathML display=inline><mml:mi>E</mml:mi><mml:mi>≤</mml:mi><mml:mn>1000</mml:mn></mml:math>GeV) intranuclear cascade model for nucleons and pions incident on nuclei and comparisons with experimental data" @default.
- W1978670483 cites W1969211229 @default.
- W1978670483 cites W1972123977 @default.
- W1978670483 cites W1992024879 @default.
- W1978670483 cites W1996518586 @default.
- W1978670483 cites W2009025281 @default.
- W1978670483 cites W2019721885 @default.
- W1978670483 cites W2021720585 @default.
- W1978670483 cites W2042491940 @default.
- W1978670483 cites W2046388364 @default.
- W1978670483 cites W2055376437 @default.
- W1978670483 cites W2058641633 @default.
- W1978670483 cites W2058782768 @default.
- W1978670483 cites W2060694216 @default.
- W1978670483 cites W2067458968 @default.
- W1978670483 cites W2070600102 @default.
- W1978670483 cites W2075647143 @default.
- W1978670483 cites W2076185427 @default.
- W1978670483 cites W2077248195 @default.
- W1978670483 cites W2093303436 @default.
- W1978670483 cites W2575185279 @default.
- W1978670483 cites W4234242310 @default.
- W1978670483 cites W4378759106 @default.
- W1978670483 doi "https://doi.org/10.1103/physrevc.17.1382" @default.
- W1978670483 hasPublicationYear "1978" @default.
- W1978670483 type Work @default.
- W1978670483 sameAs 1978670483 @default.
- W1978670483 citedByCount "16" @default.
- W1978670483 countsByYear W19786704832012 @default.
- W1978670483 countsByYear W19786704832014 @default.
- W1978670483 crossrefType "journal-article" @default.
- W1978670483 hasAuthorship W1978670483A5020664891 @default.
- W1978670483 hasAuthorship W1978670483A5034062214 @default.
- W1978670483 hasAuthorship W1978670483A5056639455 @default.
- W1978670483 hasAuthorship W1978670483A5066485156 @default.
- W1978670483 hasAuthorship W1978670483A5069390319 @default.
- W1978670483 hasConcept C109214941 @default.
- W1978670483 hasConcept C121332964 @default.
- W1978670483 hasConcept C152568617 @default.
- W1978670483 hasConcept C172695262 @default.
- W1978670483 hasConcept C185544564 @default.
- W1978670483 hasConcept C185592680 @default.
- W1978670483 hasConcept C186370098 @default.
- W1978670483 hasConcept C206094082 @default.
- W1978670483 hasConcept C34146451 @default.
- W1978670483 hasConcept C43617362 @default.
- W1978670483 hasConcept C62520636 @default.
- W1978670483 hasConcept C75812238 @default.
- W1978670483 hasConcept C78396525 @default.
- W1978670483 hasConceptScore W1978670483C109214941 @default.
- W1978670483 hasConceptScore W1978670483C121332964 @default.
- W1978670483 hasConceptScore W1978670483C152568617 @default.
- W1978670483 hasConceptScore W1978670483C172695262 @default.
- W1978670483 hasConceptScore W1978670483C185544564 @default.
- W1978670483 hasConceptScore W1978670483C185592680 @default.
- W1978670483 hasConceptScore W1978670483C186370098 @default.
- W1978670483 hasConceptScore W1978670483C206094082 @default.
- W1978670483 hasConceptScore W1978670483C34146451 @default.
- W1978670483 hasConceptScore W1978670483C43617362 @default.
- W1978670483 hasConceptScore W1978670483C62520636 @default.
- W1978670483 hasConceptScore W1978670483C75812238 @default.
- W1978670483 hasConceptScore W1978670483C78396525 @default.
- W1978670483 hasIssue "4" @default.
- W1978670483 hasLocation W19786704831 @default.
- W1978670483 hasOpenAccess W1978670483 @default.
- W1978670483 hasPrimaryLocation W19786704831 @default.
- W1978670483 hasRelatedWork W2011020689 @default.
- W1978670483 hasRelatedWork W2026155504 @default.
- W1978670483 hasRelatedWork W2041206134 @default.
- W1978670483 hasRelatedWork W2070903187 @default.
- W1978670483 hasRelatedWork W2077845311 @default.
- W1978670483 hasRelatedWork W211765919 @default.
- W1978670483 hasRelatedWork W2739492475 @default.
- W1978670483 hasRelatedWork W3149014507 @default.
- W1978670483 hasRelatedWork W336507873 @default.
- W1978670483 hasRelatedWork W4255485817 @default.
- W1978670483 hasVolume "17" @default.
- W1978670483 isParatext "false" @default.
- W1978670483 isRetracted "false" @default.
- W1978670483 magId "1978670483" @default.
- W1978670483 workType "article" @default.