author_facet Benussi, L.
Bianco, S.
Saviano, G.
Muhammad, S.
Piccolo, D.
Raffone, G.
Caponero, M.
Passamonti, L.
Pierluigi, D.
Russo, A.
Primavera, F.
Cerbelli, S.
Lalli, A.
Valente, M.
Ferrini, M.
Teissandier, B.
Taborelli, M.
Parvis, M.
Grassini, S.
Tirilló, J.
Sarasini, F.
Franchi, A.V.
Benussi, L.
Bianco, S.
Saviano, G.
Muhammad, S.
Piccolo, D.
Raffone, G.
Caponero, M.
Passamonti, L.
Pierluigi, D.
Russo, A.
Primavera, F.
Cerbelli, S.
Lalli, A.
Valente, M.
Ferrini, M.
Teissandier, B.
Taborelli, M.
Parvis, M.
Grassini, S.
Tirilló, J.
Sarasini, F.
Franchi, A.V.
author Benussi, L.
Bianco, S.
Saviano, G.
Muhammad, S.
Piccolo, D.
Raffone, G.
Caponero, M.
Passamonti, L.
Pierluigi, D.
Russo, A.
Primavera, F.
Cerbelli, S.
Lalli, A.
Valente, M.
Ferrini, M.
Teissandier, B.
Taborelli, M.
Parvis, M.
Grassini, S.
Tirilló, J.
Sarasini, F.
Franchi, A.V.
spellingShingle Benussi, L.
Bianco, S.
Saviano, G.
Muhammad, S.
Piccolo, D.
Raffone, G.
Caponero, M.
Passamonti, L.
Pierluigi, D.
Russo, A.
Primavera, F.
Cerbelli, S.
Lalli, A.
Valente, M.
Ferrini, M.
Teissandier, B.
Taborelli, M.
Parvis, M.
Grassini, S.
Tirilló, J.
Sarasini, F.
Franchi, A.V.
EPJ Web of Conferences
Characterization of the water diffusion in GEM foil material
General Earth and Planetary Sciences
General Engineering
General Environmental Science
author_sort benussi, l.
spelling Benussi, L. Bianco, S. Saviano, G. Muhammad, S. Piccolo, D. Raffone, G. Caponero, M. Passamonti, L. Pierluigi, D. Russo, A. Primavera, F. Cerbelli, S. Lalli, A. Valente, M. Ferrini, M. Teissandier, B. Taborelli, M. Parvis, M. Grassini, S. Tirilló, J. Sarasini, F. Franchi, A.V. 2100-014X EDP Sciences General Earth and Planetary Sciences General Engineering General Environmental Science http://dx.doi.org/10.1051/epjconf/201817403005 <jats:p>Systematic studies on the GEM foil material are performed to measure the moisture diffusion rate and saturation level. These studies are important because the presence of this compound inside the detector’ s foil can possibly change its mechanical and electrical properties, and in such a way, the detector performance can be affected. To understand this phenomenon, a model is developed with COMSOL Multiphysics v. 4.3 [1], which described the adsorption and diffusion within the geometry of GEM foil, the concentration profiles and the time required to saturate the foil. The COMSOL model is verified by experimental observations on a GEM foil sample. This note will describe the model and its experimental verification results.</jats:p> Characterization of the water diffusion in GEM foil material EPJ Web of Conferences
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series EPJ Web of Conferences
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title Characterization of the water diffusion in GEM foil material
title_unstemmed Characterization of the water diffusion in GEM foil material
title_full Characterization of the water diffusion in GEM foil material
title_fullStr Characterization of the water diffusion in GEM foil material
title_full_unstemmed Characterization of the water diffusion in GEM foil material
title_short Characterization of the water diffusion in GEM foil material
title_sort characterization of the water diffusion in gem foil material
topic General Earth and Planetary Sciences
General Engineering
General Environmental Science
url http://dx.doi.org/10.1051/epjconf/201817403005
publishDate 2018
physical 03005
description <jats:p>Systematic studies on the GEM foil material are performed to measure the moisture diffusion rate and saturation level. These studies are important because the presence of this compound inside the detector’ s foil can possibly change its mechanical and electrical properties, and in such a way, the detector performance can be affected. To understand this phenomenon, a model is developed with COMSOL Multiphysics v. 4.3 [1], which described the adsorption and diffusion within the geometry of GEM foil, the concentration profiles and the time required to saturate the foil. The COMSOL model is verified by experimental observations on a GEM foil sample. This note will describe the model and its experimental verification results.</jats:p>
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author Benussi, L., Bianco, S., Saviano, G., Muhammad, S., Piccolo, D., Raffone, G., Caponero, M., Passamonti, L., Pierluigi, D., Russo, A., Primavera, F., Cerbelli, S., Lalli, A., Valente, M., Ferrini, M., Teissandier, B., Taborelli, M., Parvis, M., Grassini, S., Tirilló, J., Sarasini, F., Franchi, A.V.
author_facet Benussi, L., Bianco, S., Saviano, G., Muhammad, S., Piccolo, D., Raffone, G., Caponero, M., Passamonti, L., Pierluigi, D., Russo, A., Primavera, F., Cerbelli, S., Lalli, A., Valente, M., Ferrini, M., Teissandier, B., Taborelli, M., Parvis, M., Grassini, S., Tirilló, J., Sarasini, F., Franchi, A.V., Benussi, L., Bianco, S., Saviano, G., Muhammad, S., Piccolo, D., Raffone, G., Caponero, M., Passamonti, L., Pierluigi, D., Russo, A., Primavera, F., Cerbelli, S., Lalli, A., Valente, M., Ferrini, M., Teissandier, B., Taborelli, M., Parvis, M., Grassini, S., Tirilló, J., Sarasini, F., Franchi, A.V.
author_sort benussi, l.
container_start_page 0
container_title EPJ Web of Conferences
container_volume 174
description <jats:p>Systematic studies on the GEM foil material are performed to measure the moisture diffusion rate and saturation level. These studies are important because the presence of this compound inside the detector’ s foil can possibly change its mechanical and electrical properties, and in such a way, the detector performance can be affected. To understand this phenomenon, a model is developed with COMSOL Multiphysics v. 4.3 [1], which described the adsorption and diffusion within the geometry of GEM foil, the concentration profiles and the time required to saturate the foil. The COMSOL model is verified by experimental observations on a GEM foil sample. This note will describe the model and its experimental verification results.</jats:p>
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spelling Benussi, L. Bianco, S. Saviano, G. Muhammad, S. Piccolo, D. Raffone, G. Caponero, M. Passamonti, L. Pierluigi, D. Russo, A. Primavera, F. Cerbelli, S. Lalli, A. Valente, M. Ferrini, M. Teissandier, B. Taborelli, M. Parvis, M. Grassini, S. Tirilló, J. Sarasini, F. Franchi, A.V. 2100-014X EDP Sciences General Earth and Planetary Sciences General Engineering General Environmental Science http://dx.doi.org/10.1051/epjconf/201817403005 <jats:p>Systematic studies on the GEM foil material are performed to measure the moisture diffusion rate and saturation level. These studies are important because the presence of this compound inside the detector’ s foil can possibly change its mechanical and electrical properties, and in such a way, the detector performance can be affected. To understand this phenomenon, a model is developed with COMSOL Multiphysics v. 4.3 [1], which described the adsorption and diffusion within the geometry of GEM foil, the concentration profiles and the time required to saturate the foil. The COMSOL model is verified by experimental observations on a GEM foil sample. This note will describe the model and its experimental verification results.</jats:p> Characterization of the water diffusion in GEM foil material EPJ Web of Conferences
spellingShingle Benussi, L., Bianco, S., Saviano, G., Muhammad, S., Piccolo, D., Raffone, G., Caponero, M., Passamonti, L., Pierluigi, D., Russo, A., Primavera, F., Cerbelli, S., Lalli, A., Valente, M., Ferrini, M., Teissandier, B., Taborelli, M., Parvis, M., Grassini, S., Tirilló, J., Sarasini, F., Franchi, A.V., EPJ Web of Conferences, Characterization of the water diffusion in GEM foil material, General Earth and Planetary Sciences, General Engineering, General Environmental Science
title Characterization of the water diffusion in GEM foil material
title_full Characterization of the water diffusion in GEM foil material
title_fullStr Characterization of the water diffusion in GEM foil material
title_full_unstemmed Characterization of the water diffusion in GEM foil material
title_short Characterization of the water diffusion in GEM foil material
title_sort characterization of the water diffusion in gem foil material
title_unstemmed Characterization of the water diffusion in GEM foil material
topic General Earth and Planetary Sciences, General Engineering, General Environmental Science
url http://dx.doi.org/10.1051/epjconf/201817403005