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Parametrized simulation of the micro-RWELL response with PARSIFAL software
by
Evangelisti, F.
, Melchiorri, M.
, Bencivenni, G.
, Balossino, I.
, Ferroli, R. Baldini
, Gramigna, S.
, Rivetti, A.
, Fava, L.
, Marcello, S.
, Giraudo, G.
, Bianchi, F.
, Maggiora, M.
, Sosio, S.
, Ramusino, A. Cotta
, Rocha Rolo, M. Da
, Lener, M. Poli
, Bettoni, D.
, Morello, G.
, Mangoni, A.
, Cotto, G.
, Mori, F. De
, Cibinetto, G.
, Gatta, M.
, Giacomelli, P.
, Bortone, A.
, Scodeggio, M.
, Lavezzi, L.
, Mezzadri, G.
, Garbolino, S.
, Giovannetti, M.
, Greco, M.
, Patteri, P.
, Lucia, E. De
, Spataro, S.
, Felici, G.
, Farinelli, R.
, Garzia, I.
, Bertani, M.
, Destefanis, M.
, Melendi, F. M.
, Papalino, G.
, Amoroso, A.
, Cossio, F.
, Malaguti, R.
, Pacetti, S.
in
Charged particles
/ Gas detectors
/ Parameterization
/ Parameters
/ Simulation
/ Software
2026
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Parametrized simulation of the micro-RWELL response with PARSIFAL software
by
Evangelisti, F.
, Melchiorri, M.
, Bencivenni, G.
, Balossino, I.
, Ferroli, R. Baldini
, Gramigna, S.
, Rivetti, A.
, Fava, L.
, Marcello, S.
, Giraudo, G.
, Bianchi, F.
, Maggiora, M.
, Sosio, S.
, Ramusino, A. Cotta
, Rocha Rolo, M. Da
, Lener, M. Poli
, Bettoni, D.
, Morello, G.
, Mangoni, A.
, Cotto, G.
, Mori, F. De
, Cibinetto, G.
, Gatta, M.
, Giacomelli, P.
, Bortone, A.
, Scodeggio, M.
, Lavezzi, L.
, Mezzadri, G.
, Garbolino, S.
, Giovannetti, M.
, Greco, M.
, Patteri, P.
, Lucia, E. De
, Spataro, S.
, Felici, G.
, Farinelli, R.
, Garzia, I.
, Bertani, M.
, Destefanis, M.
, Melendi, F. M.
, Papalino, G.
, Amoroso, A.
, Cossio, F.
, Malaguti, R.
, Pacetti, S.
in
Charged particles
/ Gas detectors
/ Parameterization
/ Parameters
/ Simulation
/ Software
2026
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Parametrized simulation of the micro-RWELL response with PARSIFAL software
by
Evangelisti, F.
, Melchiorri, M.
, Bencivenni, G.
, Balossino, I.
, Ferroli, R. Baldini
, Gramigna, S.
, Rivetti, A.
, Fava, L.
, Marcello, S.
, Giraudo, G.
, Bianchi, F.
, Maggiora, M.
, Sosio, S.
, Ramusino, A. Cotta
, Rocha Rolo, M. Da
, Lener, M. Poli
, Bettoni, D.
, Morello, G.
, Mangoni, A.
, Cotto, G.
, Mori, F. De
, Cibinetto, G.
, Gatta, M.
, Giacomelli, P.
, Bortone, A.
, Scodeggio, M.
, Lavezzi, L.
, Mezzadri, G.
, Garbolino, S.
, Giovannetti, M.
, Greco, M.
, Patteri, P.
, Lucia, E. De
, Spataro, S.
, Felici, G.
, Farinelli, R.
, Garzia, I.
, Bertani, M.
, Destefanis, M.
, Melendi, F. M.
, Papalino, G.
, Amoroso, A.
, Cossio, F.
, Malaguti, R.
, Pacetti, S.
in
Charged particles
/ Gas detectors
/ Parameterization
/ Parameters
/ Simulation
/ Software
2026
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Parametrized simulation of the micro-RWELL response with PARSIFAL software
Journal Article
Parametrized simulation of the micro-RWELL response with PARSIFAL software
2026
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Overview
PARSIFAL is a software tool originally implemented to reproduce the response of a triple-GEM interacting with a charged particle, which describes the main physical processes with a parametrization. Reliable software as GARFIELD++ is widely used to simulate a gaseous detector with great accuracy, but it is CPU-time consuming. The implementation of PARSIFAL was driven by the need to reduce the processing time, while maintaining the precision of a full simulation. The software is initialized with parameters extracted from a GARFIELD++ simulation, run only once. Then, PARSIFAL can be run independently to provide a reliable simulation by sampling from a set of functions which describe the physical effects and depend on the input parameters. The simulation of the triple-GEM was tuned on experimental results from a testbeam. Recently, PARSIFAL was extended to the μ-RWELL technology, with the implementation of the charge dispersion effect generated by the resistive layer. A fine tuning of the simulation for the μ-RWELL is ongoing, following a strategy similar to the one validated for the triple-GEM, with a special attention to the tuning of the resistivity of the resistive layer. An illustration of the general code, setting the focus on this latest implementation will be described.
Publisher
IOP Publishing
Subject
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