The FLUKA code: present applications and future developments

dc.creatorFasso', A.
dc.creatorFerrari, A.
dc.creatorRoesler, S.
dc.creatorRanft, J.
dc.creatorSala, P. R.
dc.creatorBattistoni, G.
dc.creatorCampanella, M.
dc.creatorCerutti, F.
dc.creatorDe Biaggi, L.
dc.creatorGadioli, E.
dc.creatorGarzelli, M. V.
dc.creatorBallarini, F.
dc.creatorOttolenghi, A.
dc.creatorScannicchio, D.
dc.creatorCarboni, M.
dc.creatorPelliccioni, M.
dc.creatorVillari, R.
dc.creatorAndersen, V.
dc.creatorEmpl, A.
dc.creatorLee, K.
dc.creatorPinsky, L.
dc.creatorWilson, T. N.
dc.creatorZapp, N.
dc.date2003-06-23
dc.date.accessioned2026-07-07T05:49:32Z
dc.date.available2026-07-07T05:49:32Z
dc.descriptionThe main features of the FLUKA Monte Carlo code, which can deal with transport and interaction of electromagnetic and hadronic particles, are summarised. The physical models embedded in FLUKA are mentioned, as well as examples of benchmarking against experimental data. A short history of the code is provided and the following examples of applications are discussed in detail: prediction of calorimetric performances, atmospheric neutrino flux calculations, dosimetry in atmosphere and radiobiology applications, including hadrontherapy and space radiation protection. Finally a few lines are dedicated to the FLUKA server, from which the code can be downloaded.
dc.descriptiontalk from the 2003 Computing in High Energy and Nuclear Physics (CHEP03), La Jolla, Ca, USA, March 2003, 8 pages, pdf
dc.identifierhttps://arxiv.org/abs/physics/0306162
dc.identifierhttp://arxiv.org/abs/physics/0306162
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/85425
dc.subjectComputational Physics
dc.titleThe FLUKA code: present applications and future developments
dc.typetext

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