dbo:abstract |
APFEL is an opensource software able to perform Dokshitzer–Gribov–Lipatov–Altarelli–Parisi (DGLAP) evolution up to next to next to leading order (NNLO) in quantum chromodynamics (QCD) and to leading order (LO) in quantum electrodynamics (QED), both with pole and minimal subtraction scheme (MSbar) masses. The coupled DGLAP QCD+QED evolution equations are solved in by means of and Runge-Kutta techniques, and allow the exploration of different options for the treatment of . (en) |
dbo:computingPlatform |
dbr:Cross-platform |
dbo:genre |
dbr:Particle_Physics |
dbo:latestReleaseDate |
2019-06-12 (xsd:date) |
dbo:latestReleaseVersion |
3.0.4 |
dbo:license |
dbr:GNU_General_Public_License |
dbo:programmingLanguage |
dbr:Python_(programming_language) dbr:C++ dbr:Fortran |
dbo:wikiPageExternalLink |
http://apfel.hepforge.org/ http://apfel.hepforge.org |
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41723150 (xsd:integer) |
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1848 (xsd:nonNegativeInteger) |
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dbo:wikiPageWikiLink |
dbr:Python_(programming_language) dbr:Quantum_electrodynamics dbr:Cross-platform dbr:Runge-Kutta dbr:GNU_General_Public_License dbr:C++ dbr:Minimal_subtraction_scheme dbr:DGLAP dbr:Fortran dbr:Quantum_chromodynamics dbc:Physics_software dbr:NNPDF dbr:Particle_Physics dbr:Opensource dbr:Higher_order_interpolation dbr:Subleading_term dbr:X-space |
dbp:author |
V. Bertone, S. Carrazza, J. Rojo (en) |
dbp:caption |
A screenshot of APFEL GUI (en) |
dbp:genre |
dbr:Particle_Physics |
dbp:latestReleaseDate |
2019-06-12 (xsd:date) |
dbp:latestReleaseVersion |
3 (xsd:integer) |
dbp:license |
dbr:GNU_General_Public_License |
dbp:name |
APFEL: A PDF Evolution Library (en) |
dbp:platform |
dbr:Cross-platform |
dbp:programmingLanguage |
dbr:Python_(programming_language) dbr:C++ dbr:Fortran |
dbp:released |
November 2013 (en) |
dbp:website |
http://apfel.hepforge.org |
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dct:subject |
dbc:Physics_software |
gold:hypernym |
dbr:Software |
rdf:type |
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rdfs:comment |
APFEL is an opensource software able to perform Dokshitzer–Gribov–Lipatov–Altarelli–Parisi (DGLAP) evolution up to next to next to leading order (NNLO) in quantum chromodynamics (QCD) and to leading order (LO) in quantum electrodynamics (QED), both with pole and minimal subtraction scheme (MSbar) masses. The coupled DGLAP QCD+QED evolution equations are solved in by means of and Runge-Kutta techniques, and allow the exploration of different options for the treatment of . (en) |
rdfs:label |
APFEL (Software) (en) |
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freebase:APFEL (Software) wikidata:APFEL (Software) https://global.dbpedia.org/id/cDon |
prov:wasDerivedFrom |
wikipedia-en:APFEL_(Software)?oldid=1015571583&ns=0 |
foaf:homepage |
http://apfel.hepforge.org |
foaf:isPrimaryTopicOf |
wikipedia-en:APFEL_(Software) |
foaf:name |
APFEL: A PDF Evolution Library (en) |
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dbr:DGLAP_evolution_equations |
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wikipedia-en:APFEL_(Software) |