Prototyping of petalets for the Phase-II upgrade of the silicon strip tracking detector of the ATLAS experiment
S. Kuehn, V. Benítez, J. Fernández-Tejero, C. Fleta, M. Lozano, M. Ullán, H. Lacker, L. Rehnisch, D. Sperlich, D. Ariza, I. Bloch, S. Díez, I. Gregor, J. Keller, K. Lohwasser, L. Poley, V. Prahl, N. Zakharchuk, M. Hauser, K. Jakobs, K. Mahboubi, R. Mori, U. Parzefall, J. Bernabéu, C. Lacasta, R. Marco-Hernandez, D. Rodriguez Rodriguez, D. Santoyo, C. Solaz Contell, U. Soldevila Serrano, T. Affolder, A. Greenall, B. Gallop, P.W. Phillips and V. Cindro
Institute of Physics Publishing (IOP)
Published 2018
Institute of Physics Publishing (IOP)
Published 2018
Publication Date: |
2018-03-23
|
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Publisher: |
Institute of Physics Publishing (IOP)
|
Electronic ISSN: |
1748-0221
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Topics: |
Physics
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Published by: |
_version_ | 1836398859575623681 |
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autor | S. Kuehn, V. Benítez, J. Fernández-Tejero, C. Fleta, M. Lozano, M. Ullán, H. Lacker, L. Rehnisch, D. Sperlich, D. Ariza, I. Bloch, S. Díez, I. Gregor, J. Keller, K. Lohwasser, L. Poley, V. Prahl, N. Zakharchuk, M. Hauser, K. Jakobs, K. Mahboubi, R. Mori, U. Parzefall, J. Bernabéu, C. Lacasta, R. Marco-Hernandez, D. Rodriguez Rodriguez, D. Santoyo, C. Solaz Contell, U. Soldevila Serrano, T. Affolder, A. Greenall, B. Gallop, P.W. Phillips and V. Cindro |
beschreibung | In the high luminosity era of the Large Hadron Collider, the instantaneous luminosity is expected to reach unprecedented values, resulting in about 200 proton-proton interactions in a typical bunch crossing. To cope with the resultant increase in occupancy, bandwidth and radiation damage, the ATLAS Inner Detector will be replaced by an all-silicon system, the Inner Tracker (ITk). The ITk consists of a silicon pixel and a strip detector and exploits the concept of modularity. Prototyping and testing of various strip detector components has been carried out. This paper presents the developments and results obtained with reduced-size structures equivalent to those foreseen to be used in the forward region of the silicon strip detector. Referred to as petalets, these structures are built around a composite sandwich with embedded cooling pipes and electrical tapes for routing the signals and power. Detector modules built using electronic flex boards and silicon strip sensors are glued... |
citation_standardnr | 6215454 |
datenlieferant | ipn_articles |
feed_id | 66992 |
feed_publisher | Institute of Physics Publishing (IOP) |
feed_publisher_url | http://www.iop.org/ |
insertion_date | 2018-03-23 |
journaleissn | 1748-0221 |
publikationsjahr_anzeige | 2018 |
publikationsjahr_facette | 2018 |
publikationsjahr_intervall | 7984:2015-2019 |
publikationsjahr_sort | 2018 |
publisher | Institute of Physics Publishing (IOP) |
quelle | Journal of Instrumentation |
relation | http://iopscience.iop.org/1748-0221/13/03/T03004 |
search_space | articles |
shingle_author_1 | S. Kuehn, V. Benítez, J. Fernández-Tejero, C. Fleta, M. Lozano, M. Ullán, H. Lacker, L. Rehnisch, D. Sperlich, D. Ariza, I. Bloch, S. Díez, I. Gregor, J. Keller, K. Lohwasser, L. Poley, V. Prahl, N. Zakharchuk, M. Hauser, K. Jakobs, K. Mahboubi, R. Mori, U. Parzefall, J. Bernabéu, C. Lacasta, R. Marco-Hernandez, D. Rodriguez Rodriguez, D. Santoyo, C. Solaz Contell, U. Soldevila Serrano, T. Affolder, A. Greenall, B. Gallop, P.W. Phillips and V. Cindro |
shingle_author_2 | S. Kuehn, V. Benítez, J. Fernández-Tejero, C. Fleta, M. Lozano, M. Ullán, H. Lacker, L. Rehnisch, D. Sperlich, D. Ariza, I. Bloch, S. Díez, I. Gregor, J. Keller, K. Lohwasser, L. Poley, V. Prahl, N. Zakharchuk, M. Hauser, K. Jakobs, K. Mahboubi, R. Mori, U. Parzefall, J. Bernabéu, C. Lacasta, R. Marco-Hernandez, D. Rodriguez Rodriguez, D. Santoyo, C. Solaz Contell, U. Soldevila Serrano, T. Affolder, A. Greenall, B. Gallop, P.W. Phillips and V. Cindro |
shingle_author_3 | S. Kuehn, V. Benítez, J. Fernández-Tejero, C. Fleta, M. Lozano, M. Ullán, H. Lacker, L. Rehnisch, D. Sperlich, D. Ariza, I. Bloch, S. Díez, I. Gregor, J. Keller, K. Lohwasser, L. Poley, V. Prahl, N. Zakharchuk, M. Hauser, K. Jakobs, K. Mahboubi, R. Mori, U. Parzefall, J. Bernabéu, C. Lacasta, R. Marco-Hernandez, D. Rodriguez Rodriguez, D. Santoyo, C. Solaz Contell, U. Soldevila Serrano, T. Affolder, A. Greenall, B. Gallop, P.W. Phillips and V. Cindro |
shingle_author_4 | S. Kuehn, V. Benítez, J. Fernández-Tejero, C. Fleta, M. Lozano, M. Ullán, H. Lacker, L. Rehnisch, D. Sperlich, D. Ariza, I. Bloch, S. Díez, I. Gregor, J. Keller, K. Lohwasser, L. Poley, V. Prahl, N. Zakharchuk, M. Hauser, K. Jakobs, K. Mahboubi, R. Mori, U. Parzefall, J. Bernabéu, C. Lacasta, R. Marco-Hernandez, D. Rodriguez Rodriguez, D. Santoyo, C. Solaz Contell, U. Soldevila Serrano, T. Affolder, A. Greenall, B. Gallop, P.W. Phillips and V. Cindro |
shingle_catch_all_1 | Prototyping of petalets for the Phase-II upgrade of the silicon strip tracking detector of the ATLAS experiment In the high luminosity era of the Large Hadron Collider, the instantaneous luminosity is expected to reach unprecedented values, resulting in about 200 proton-proton interactions in a typical bunch crossing. To cope with the resultant increase in occupancy, bandwidth and radiation damage, the ATLAS Inner Detector will be replaced by an all-silicon system, the Inner Tracker (ITk). The ITk consists of a silicon pixel and a strip detector and exploits the concept of modularity. Prototyping and testing of various strip detector components has been carried out. This paper presents the developments and results obtained with reduced-size structures equivalent to those foreseen to be used in the forward region of the silicon strip detector. Referred to as petalets, these structures are built around a composite sandwich with embedded cooling pipes and electrical tapes for routing the signals and power. Detector modules built using electronic flex boards and silicon strip sensors are glued... S. Kuehn, V. Benítez, J. Fernández-Tejero, C. Fleta, M. Lozano, M. Ullán, H. Lacker, L. Rehnisch, D. Sperlich, D. Ariza, I. Bloch, S. Díez, I. Gregor, J. Keller, K. Lohwasser, L. Poley, V. Prahl, N. Zakharchuk, M. Hauser, K. Jakobs, K. Mahboubi, R. Mori, U. Parzefall, J. Bernabéu, C. Lacasta, R. Marco-Hernandez, D. Rodriguez Rodriguez, D. Santoyo, C. Solaz Contell, U. Soldevila Serrano, T. Affolder, A. Greenall, B. Gallop, P.W. Phillips and V. Cindro Institute of Physics Publishing (IOP) 1748-0221 17480221 |
shingle_catch_all_2 | Prototyping of petalets for the Phase-II upgrade of the silicon strip tracking detector of the ATLAS experiment In the high luminosity era of the Large Hadron Collider, the instantaneous luminosity is expected to reach unprecedented values, resulting in about 200 proton-proton interactions in a typical bunch crossing. To cope with the resultant increase in occupancy, bandwidth and radiation damage, the ATLAS Inner Detector will be replaced by an all-silicon system, the Inner Tracker (ITk). The ITk consists of a silicon pixel and a strip detector and exploits the concept of modularity. Prototyping and testing of various strip detector components has been carried out. This paper presents the developments and results obtained with reduced-size structures equivalent to those foreseen to be used in the forward region of the silicon strip detector. Referred to as petalets, these structures are built around a composite sandwich with embedded cooling pipes and electrical tapes for routing the signals and power. Detector modules built using electronic flex boards and silicon strip sensors are glued... S. Kuehn, V. Benítez, J. Fernández-Tejero, C. Fleta, M. Lozano, M. Ullán, H. Lacker, L. Rehnisch, D. Sperlich, D. Ariza, I. Bloch, S. Díez, I. Gregor, J. Keller, K. Lohwasser, L. Poley, V. Prahl, N. Zakharchuk, M. Hauser, K. Jakobs, K. Mahboubi, R. Mori, U. Parzefall, J. Bernabéu, C. Lacasta, R. Marco-Hernandez, D. Rodriguez Rodriguez, D. Santoyo, C. Solaz Contell, U. Soldevila Serrano, T. Affolder, A. Greenall, B. Gallop, P.W. Phillips and V. Cindro Institute of Physics Publishing (IOP) 1748-0221 17480221 |
shingle_catch_all_3 | Prototyping of petalets for the Phase-II upgrade of the silicon strip tracking detector of the ATLAS experiment In the high luminosity era of the Large Hadron Collider, the instantaneous luminosity is expected to reach unprecedented values, resulting in about 200 proton-proton interactions in a typical bunch crossing. To cope with the resultant increase in occupancy, bandwidth and radiation damage, the ATLAS Inner Detector will be replaced by an all-silicon system, the Inner Tracker (ITk). The ITk consists of a silicon pixel and a strip detector and exploits the concept of modularity. Prototyping and testing of various strip detector components has been carried out. This paper presents the developments and results obtained with reduced-size structures equivalent to those foreseen to be used in the forward region of the silicon strip detector. Referred to as petalets, these structures are built around a composite sandwich with embedded cooling pipes and electrical tapes for routing the signals and power. Detector modules built using electronic flex boards and silicon strip sensors are glued... S. Kuehn, V. Benítez, J. Fernández-Tejero, C. Fleta, M. Lozano, M. Ullán, H. Lacker, L. Rehnisch, D. Sperlich, D. Ariza, I. Bloch, S. Díez, I. Gregor, J. Keller, K. Lohwasser, L. Poley, V. Prahl, N. Zakharchuk, M. Hauser, K. Jakobs, K. Mahboubi, R. Mori, U. Parzefall, J. Bernabéu, C. Lacasta, R. Marco-Hernandez, D. Rodriguez Rodriguez, D. Santoyo, C. Solaz Contell, U. Soldevila Serrano, T. Affolder, A. Greenall, B. Gallop, P.W. Phillips and V. Cindro Institute of Physics Publishing (IOP) 1748-0221 17480221 |
shingle_catch_all_4 | Prototyping of petalets for the Phase-II upgrade of the silicon strip tracking detector of the ATLAS experiment In the high luminosity era of the Large Hadron Collider, the instantaneous luminosity is expected to reach unprecedented values, resulting in about 200 proton-proton interactions in a typical bunch crossing. To cope with the resultant increase in occupancy, bandwidth and radiation damage, the ATLAS Inner Detector will be replaced by an all-silicon system, the Inner Tracker (ITk). The ITk consists of a silicon pixel and a strip detector and exploits the concept of modularity. Prototyping and testing of various strip detector components has been carried out. This paper presents the developments and results obtained with reduced-size structures equivalent to those foreseen to be used in the forward region of the silicon strip detector. Referred to as petalets, these structures are built around a composite sandwich with embedded cooling pipes and electrical tapes for routing the signals and power. Detector modules built using electronic flex boards and silicon strip sensors are glued... S. Kuehn, V. Benítez, J. Fernández-Tejero, C. Fleta, M. Lozano, M. Ullán, H. Lacker, L. Rehnisch, D. Sperlich, D. Ariza, I. Bloch, S. Díez, I. Gregor, J. Keller, K. Lohwasser, L. Poley, V. Prahl, N. Zakharchuk, M. Hauser, K. Jakobs, K. Mahboubi, R. Mori, U. Parzefall, J. Bernabéu, C. Lacasta, R. Marco-Hernandez, D. Rodriguez Rodriguez, D. Santoyo, C. Solaz Contell, U. Soldevila Serrano, T. Affolder, A. Greenall, B. Gallop, P.W. Phillips and V. Cindro Institute of Physics Publishing (IOP) 1748-0221 17480221 |
shingle_title_1 | Prototyping of petalets for the Phase-II upgrade of the silicon strip tracking detector of the ATLAS experiment |
shingle_title_2 | Prototyping of petalets for the Phase-II upgrade of the silicon strip tracking detector of the ATLAS experiment |
shingle_title_3 | Prototyping of petalets for the Phase-II upgrade of the silicon strip tracking detector of the ATLAS experiment |
shingle_title_4 | Prototyping of petalets for the Phase-II upgrade of the silicon strip tracking detector of the ATLAS experiment |
timestamp | 2025-06-30T23:33:46.645Z |
titel | Prototyping of petalets for the Phase-II upgrade of the silicon strip tracking detector of the ATLAS experiment |
titel_suche | Prototyping of petalets for the Phase-II upgrade of the silicon strip tracking detector of the ATLAS experiment |
topic | U |
uid | ipn_articles_6215454 |