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Test Beam Results of 3D Silicon Pixel Sensors for the ATLAS upgrade

Results on beam tests of 3D silicon pixel sensors aimed at the ATLAS Insertable-B-Layer and High Luminosity LHC (HL-LHC)) upgrades are presented. Measurements include charge collection, tracking efficiency and charge sharing between pixel cells, as a function of track incident angle, and were perfor...

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Detalles Bibliográficos
Autores principales: Grenier, P., Alimonti, G., Barbero, M., Bates, R., Bolle, E., Borri, M., Boscardin, M., Buttar, C., Capua, M., Cavalli-Sforza, M., Cobal, M., Cristofoli, A., Dalla Betta, G.F., Darbo, G., Da Via, C., Devetak, E., DeWilde, B., Di Girolamo, B., Dobos, D., Einsweiler, K., Esseni, D., Fazio, S., Fleta, C., Freestone, J., Gallrapp, C., Garcia-Sciveres, M., Gariano, G., Gemme, C., Giordani, M.P., Gjersdal, H., Grinstein, S., Hansen, T., Hansen, T.E., Hansson, P., Hasi, J., Helle, K., Hoeferkamp, M., Hugging, F., Jackson, P., Jakobs, K., Kalliopuska, J., Karagounis, M., Kenney, C., Kohler, M., Kocian, M., Kok, A., Kolya, S., Korokolov, I., Kostyukhin, V., Kruger, H., La Rosa, A., Lai, C.H., Lietaer, N., Lozano, M., Mastroberardino, A., Micelli, A., Nellist, C., Oja, A., Oshea, V., Padilla, C., Palestri, P., Parker, S., Parzefall, U., Pater, J., Pellegrini, G., Pernegger, H., Piemonte, C., Pospisil, S., Povoli, M., Roe, S., Rohne, O., Ronchin, S., Rovani, A., Ruscino, E., Sandaker, H., Seidel, S., Selmi, L., Silverstein, D., Sjobaek, K., Slavicek, T., Stapnes, S., Stugu, B., Stupak, J., Su, D., Susinno, G., Thompson, R., Tsung, J.W., Tsybychev, D., Watts, S.J., Wermes, N., Young, C., Zorzi, N.
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2011.01.181
http://cds.cern.ch/record/1324069
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author Grenier, P.
Alimonti, G.
Barbero, M.
Bates, R.
Bolle, E.
Borri, M.
Boscardin, M.
Buttar, C.
Capua, M.
Cavalli-Sforza, M.
Cobal, M.
Cristofoli, A.
Dalla Betta, G.F.
Darbo, G.
Da Via, C.
Devetak, E.
DeWilde, B.
Di Girolamo, B.
Dobos, D.
Einsweiler, K.
Esseni, D.
Fazio, S.
Fleta, C.
Freestone, J.
Gallrapp, C.
Garcia-Sciveres, M.
Gariano, G.
Gemme, C.
Giordani, M.P.
Gjersdal, H.
Grinstein, S.
Hansen, T.
Hansen, T.E.
Hansson, P.
Hasi, J.
Helle, K.
Hoeferkamp, M.
Hugging, F.
Jackson, P.
Jakobs, K.
Kalliopuska, J.
Karagounis, M.
Kenney, C.
Kohler, M.
Kocian, M.
Kok, A.
Kolya, S.
Korokolov, I.
Kostyukhin, V.
Kruger, H.
La Rosa, A.
Lai, C.H.
Lietaer, N.
Lozano, M.
Mastroberardino, A.
Micelli, A.
Nellist, C.
Oja, A.
Oshea, V.
Padilla, C.
Palestri, P.
Parker, S.
Parzefall, U.
Pater, J.
Pellegrini, G.
Pernegger, H.
Piemonte, C.
Pospisil, S.
Povoli, M.
Roe, S.
Rohne, O.
Ronchin, S.
Rovani, A.
Ruscino, E.
Sandaker, H.
Seidel, S.
Selmi, L.
Silverstein, D.
Sjobaek, K.
Slavicek, T.
Stapnes, S.
Stugu, B.
Stupak, J.
Su, D.
Susinno, G.
Thompson, R.
Tsung, J.W.
Tsybychev, D.
Watts, S.J.
Wermes, N.
Young, C.
Zorzi, N.
author_facet Grenier, P.
Alimonti, G.
Barbero, M.
Bates, R.
Bolle, E.
Borri, M.
Boscardin, M.
Buttar, C.
Capua, M.
Cavalli-Sforza, M.
Cobal, M.
Cristofoli, A.
Dalla Betta, G.F.
Darbo, G.
Da Via, C.
Devetak, E.
DeWilde, B.
Di Girolamo, B.
Dobos, D.
Einsweiler, K.
Esseni, D.
Fazio, S.
Fleta, C.
Freestone, J.
Gallrapp, C.
Garcia-Sciveres, M.
Gariano, G.
Gemme, C.
Giordani, M.P.
Gjersdal, H.
Grinstein, S.
Hansen, T.
Hansen, T.E.
Hansson, P.
Hasi, J.
Helle, K.
Hoeferkamp, M.
Hugging, F.
Jackson, P.
Jakobs, K.
Kalliopuska, J.
Karagounis, M.
Kenney, C.
Kohler, M.
Kocian, M.
Kok, A.
Kolya, S.
Korokolov, I.
Kostyukhin, V.
Kruger, H.
La Rosa, A.
Lai, C.H.
Lietaer, N.
Lozano, M.
Mastroberardino, A.
Micelli, A.
Nellist, C.
Oja, A.
Oshea, V.
Padilla, C.
Palestri, P.
Parker, S.
Parzefall, U.
Pater, J.
Pellegrini, G.
Pernegger, H.
Piemonte, C.
Pospisil, S.
Povoli, M.
Roe, S.
Rohne, O.
Ronchin, S.
Rovani, A.
Ruscino, E.
Sandaker, H.
Seidel, S.
Selmi, L.
Silverstein, D.
Sjobaek, K.
Slavicek, T.
Stapnes, S.
Stugu, B.
Stupak, J.
Su, D.
Susinno, G.
Thompson, R.
Tsung, J.W.
Tsybychev, D.
Watts, S.J.
Wermes, N.
Young, C.
Zorzi, N.
author_sort Grenier, P.
collection CERN
description Results on beam tests of 3D silicon pixel sensors aimed at the ATLAS Insertable-B-Layer and High Luminosity LHC (HL-LHC)) upgrades are presented. Measurements include charge collection, tracking efficiency and charge sharing between pixel cells, as a function of track incident angle, and were performed with and without a 1.6 T magnetic field oriented as the ATLAS Inner Detector solenoid field. Sensors were bump bonded to the front-end chip currently used in the ATLAS pixel detector. Full 3D sensors, with electrodes penetrating through the entire wafer thickness and active edge, and double-sided 3D sensors with partially overlapping bias and read-out electrodes were tested and showed comparable performance.
id cern-1324069
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
record_format invenio
spelling cern-13240692022-04-15T02:26:32Zdoi:10.1016/j.nima.2011.01.181http://cds.cern.ch/record/1324069engGrenier, P.Alimonti, G.Barbero, M.Bates, R.Bolle, E.Borri, M.Boscardin, M.Buttar, C.Capua, M.Cavalli-Sforza, M.Cobal, M.Cristofoli, A.Dalla Betta, G.F.Darbo, G.Da Via, C.Devetak, E.DeWilde, B.Di Girolamo, B.Dobos, D.Einsweiler, K.Esseni, D.Fazio, S.Fleta, C.Freestone, J.Gallrapp, C.Garcia-Sciveres, M.Gariano, G.Gemme, C.Giordani, M.P.Gjersdal, H.Grinstein, S.Hansen, T.Hansen, T.E.Hansson, P.Hasi, J.Helle, K.Hoeferkamp, M.Hugging, F.Jackson, P.Jakobs, K.Kalliopuska, J.Karagounis, M.Kenney, C.Kohler, M.Kocian, M.Kok, A.Kolya, S.Korokolov, I.Kostyukhin, V.Kruger, H.La Rosa, A.Lai, C.H.Lietaer, N.Lozano, M.Mastroberardino, A.Micelli, A.Nellist, C.Oja, A.Oshea, V.Padilla, C.Palestri, P.Parker, S.Parzefall, U.Pater, J.Pellegrini, G.Pernegger, H.Piemonte, C.Pospisil, S.Povoli, M.Roe, S.Rohne, O.Ronchin, S.Rovani, A.Ruscino, E.Sandaker, H.Seidel, S.Selmi, L.Silverstein, D.Sjobaek, K.Slavicek, T.Stapnes, S.Stugu, B.Stupak, J.Su, D.Susinno, G.Thompson, R.Tsung, J.W.Tsybychev, D.Watts, S.J.Wermes, N.Young, C.Zorzi, N.Test Beam Results of 3D Silicon Pixel Sensors for the ATLAS upgradeDetectors and Experimental TechniquesResults on beam tests of 3D silicon pixel sensors aimed at the ATLAS Insertable-B-Layer and High Luminosity LHC (HL-LHC)) upgrades are presented. Measurements include charge collection, tracking efficiency and charge sharing between pixel cells, as a function of track incident angle, and were performed with and without a 1.6 T magnetic field oriented as the ATLAS Inner Detector solenoid field. Sensors were bump bonded to the front-end chip currently used in the ATLAS pixel detector. Full 3D sensors, with electrodes penetrating through the entire wafer thickness and active edge, and double-sided 3D sensors with partially overlapping bias and read-out electrodes were tested and showed comparable performance.Results on beam tests of 3D silicon pixel sensors aimed at the ATLAS Insertable-B-Layer and High Luminosity LHC (HL-LHC)) upgrades are presented. Measurements include charge collection, tracking efficiency and charge sharing between pixel cells, as a function of track incident angle, and were performed with and without a 1.6 T magnetic field oriented as the ATLAS Inner Detector solenoid field. Sensors were bump bonded to the front-end chip currently used in the ATLAS pixel detector. Full 3D sensors, with electrodes penetrating through the entire wafer thickness and active edge, and double-sided 3D sensors with partially overlapping bias and read-out electrodes were tested and showed comparable performance.arXiv:1101.4203SLAC-PUB-14401oai:cds.cern.ch:13240692011-01-24
spellingShingle Detectors and Experimental Techniques
Grenier, P.
Alimonti, G.
Barbero, M.
Bates, R.
Bolle, E.
Borri, M.
Boscardin, M.
Buttar, C.
Capua, M.
Cavalli-Sforza, M.
Cobal, M.
Cristofoli, A.
Dalla Betta, G.F.
Darbo, G.
Da Via, C.
Devetak, E.
DeWilde, B.
Di Girolamo, B.
Dobos, D.
Einsweiler, K.
Esseni, D.
Fazio, S.
Fleta, C.
Freestone, J.
Gallrapp, C.
Garcia-Sciveres, M.
Gariano, G.
Gemme, C.
Giordani, M.P.
Gjersdal, H.
Grinstein, S.
Hansen, T.
Hansen, T.E.
Hansson, P.
Hasi, J.
Helle, K.
Hoeferkamp, M.
Hugging, F.
Jackson, P.
Jakobs, K.
Kalliopuska, J.
Karagounis, M.
Kenney, C.
Kohler, M.
Kocian, M.
Kok, A.
Kolya, S.
Korokolov, I.
Kostyukhin, V.
Kruger, H.
La Rosa, A.
Lai, C.H.
Lietaer, N.
Lozano, M.
Mastroberardino, A.
Micelli, A.
Nellist, C.
Oja, A.
Oshea, V.
Padilla, C.
Palestri, P.
Parker, S.
Parzefall, U.
Pater, J.
Pellegrini, G.
Pernegger, H.
Piemonte, C.
Pospisil, S.
Povoli, M.
Roe, S.
Rohne, O.
Ronchin, S.
Rovani, A.
Ruscino, E.
Sandaker, H.
Seidel, S.
Selmi, L.
Silverstein, D.
Sjobaek, K.
Slavicek, T.
Stapnes, S.
Stugu, B.
Stupak, J.
Su, D.
Susinno, G.
Thompson, R.
Tsung, J.W.
Tsybychev, D.
Watts, S.J.
Wermes, N.
Young, C.
Zorzi, N.
Test Beam Results of 3D Silicon Pixel Sensors for the ATLAS upgrade
title Test Beam Results of 3D Silicon Pixel Sensors for the ATLAS upgrade
title_full Test Beam Results of 3D Silicon Pixel Sensors for the ATLAS upgrade
title_fullStr Test Beam Results of 3D Silicon Pixel Sensors for the ATLAS upgrade
title_full_unstemmed Test Beam Results of 3D Silicon Pixel Sensors for the ATLAS upgrade
title_short Test Beam Results of 3D Silicon Pixel Sensors for the ATLAS upgrade
title_sort test beam results of 3d silicon pixel sensors for the atlas upgrade
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2011.01.181
http://cds.cern.ch/record/1324069
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