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Latest FLUKA developments
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The FLUKA Monte Carlo code has recently undergone significant enhancements, driven by needs from its user community. Key improvements are discussed, such as a new point-wise treatment for the interactions of low-energy neutrons, the incorporation of a new model for nuclear elastic scattering of protons below 250 MeV, explicit generation of synchrotron radiation photons during charged particle tracking, a revised modeling approach for coherent effects in bent crystals, and the addition of arc-DPA scoring. While improving and extending FLUKA physics performance is essential, it is equally important to ensure the long-term maintainability of the codebase. This paper also outlines the strategy and substantial progress in evolving FLUKA to meet this objective. The FLUKA features are being translated into a new codebase, fulfilling essential criteria such as continuity in the user experience and compatibility with existing inputs, thus laying the foundation for a new FLUKA generation. The codebase makes use of the Geant4 toolkit when appropriate. Additionally, the enhanced collaboration with Geant4 has resulted in the development of an interface, detailed in this paper, that enables access to the FLUKA hadronic models from any Geant4 application.
EDP Sciences
Gabrielle Hugo
Claudia Ahdida
Davide Bozzato
Daniele Calzolari
Francesco Cerutti
Alessia Ciccotelli
Anna Cimmino
Arnaud Devienne
Andre Donadon Servelle
Patrycja K. Dyrcz
Luigi Salvatore Esposito
Alice Formento
Robert Froeschl
Ruben García Alía
Simone Gilardoni
Andrea Gomes
Dávid Horváth
Barbara Humann
Angelo Infantino
Anton Lechner
Benoit Lefebvre
Giuseppe Lerner
Tommaso Lorenzon
David Lucsanyi
Matteo Magistris
Stefano Marin
Giuseppe Mazzola
Samuel Niang
Elzbieta Nowak
Francisco Ogallar Ruiz
Jean-Baptiste Potoine
Fabio Pozzi
Daniel Prelipcean
Volodymyr Rodin
Stefan Roesler
Marta Sabaté Gilarte
Mario Sacristan Barbero
Francesc Salvat Pujol
Philippe Schoofs
Alexandra-Gabriela Şerban
Ivan Sharankov
Chris Theis
Marco Tisi
Andrea Tsinganis
Roberto Versaci
Vasilis Vlachoudis
Andreas Waets
Markus Widorski
Illia Zymak
Title: Latest FLUKA developments
Description:
The FLUKA Monte Carlo code has recently undergone significant enhancements, driven by needs from its user community.
Key improvements are discussed, such as a new point-wise treatment for the interactions of low-energy neutrons, the incorporation of a new model for nuclear elastic scattering of protons below 250 MeV, explicit generation of synchrotron radiation photons during charged particle tracking, a revised modeling approach for coherent effects in bent crystals, and the addition of arc-DPA scoring.
While improving and extending FLUKA physics performance is essential, it is equally important to ensure the long-term maintainability of the codebase.
This paper also outlines the strategy and substantial progress in evolving FLUKA to meet this objective.
The FLUKA features are being translated into a new codebase, fulfilling essential criteria such as continuity in the user experience and compatibility with existing inputs, thus laying the foundation for a new FLUKA generation.
The codebase makes use of the Geant4 toolkit when appropriate.
Additionally, the enhanced collaboration with Geant4 has resulted in the development of an interface, detailed in this paper, that enables access to the FLUKA hadronic models from any Geant4 application.
Related Results
New Capabilities of the FLUKA Multi-Purpose Code
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FLAIR3 – recasting simulation experiences with the Advanced Interface for FLUKA and other Monte Carlo codes
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Benchmarking of the FLUKA Monte Carlo code against the SINBAD FNG dose experiment for Shutdown Dose Rates in D-T Fusion Applications
Benchmarking of the FLUKA Monte Carlo code against the SINBAD FNG dose experiment for Shutdown Dose Rates in D-T Fusion Applications
The assessment of shutdown dose rates in fusion facilities is crucial for ensuring safe operation, particularly for worker access to critical areas. Accurate prediction of radiatio...
Evaluation and assessment of the near field behind 3D printed-modulators for proton beam therapy
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A 3D-printed modulator is an innovation developed for particle therapy delivery systems that enables a highly conformal and homogeneous dose distribution around the tumor within a ...
Conversion coefficients for effective dose calculated using anthropomorphic mesh reference phantoms with the FLUKA code
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Abstract
The mesh reference computational phantoms from International Commission on Radiological Protection (ICRP) Publication 145 have been ...
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Abstract
The 3D range-modulator is a device used in particle delivery systems that can create a highly conformal and homogeneous dose distribution in the target volu...
Recent developments in the point wise neutron treatment for FLUKA v4
Recent developments in the point wise neutron treatment for FLUKA v4
The present paper describes the new, original implementation of a point-wise neutron treatment that is made available with FLUKA v4.3-0 (https://fluka.cern). The development is bas...
Simulation of proton and photon depth dose distributions using FLUKA and PHIT
Simulation of proton and photon depth dose distributions using FLUKA and PHIT
The most popular radiation therapy currently used for cancer treatment is photon radiation. Nevertheless, there is damage to normal tissue resulting from photon energy deposition. ...

