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Specifications and Pre-production of n$^{+}$-in-p Large-format Strip Sensors fabricated in 6-inch Silicon Wafers, ATLAS18, for the Inner Tracker of the ATLAS Detector for High-Luminosity Large Hadron Collider

The ATLAS experiment is constructing new all-silicon inner tracking system for HL-LHC. The strip detectors cover the radial extent of 40 to 100 cm. A new approach is adopted to use p-type silicon material, making the readout in n$^+$-strips, so-called n$^+$-in-p sensors. This allows for enhanced rad...

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Autores principales: Unno, Yoshinobu, Abidi, Haider, Affolder, Tony, Allport, Philip Patrick, Beaupre, Scott Lee, Beck, Graham, Bernabeu Verdu, Jose, Bevan, Adrian, Chisholm, Andrew Stephen, Ciungu, Bianca Monica, Dawson, Ian, Dowling, Andrew Jay, Fadeyev, Vitaliy, Federicova, Pavla, Fernandez-Tejero, Xavi, Fleta Corral, Celeste, Fournier, Andrew Curtis, George, William Frederick, Gignac, Matthew, Gonella, Laura, Greig, Graham George, Hara, Kazuhiko, Hirose, Shigeki, Hommels, Bart, Ishii, Tatsuya, Jessiman, Callan, Johnson, Jacob Wayne, Jones, Dominic, Kachiguine, Serguei, Kang, Nathan Jihoon, Keller, John Stakely, Klein, Christoph Thomas, Koffas, Thomas, Kopsalis, Ioannis, Kroll, Jiri, Kvasnicka, Jiri, Lacasta Llacer, Carlos, Latonova, Vera, Lomas, Joshua David, Mikestikova, Marcela, Miyagawa, Paul, Alvira Torre, Elena Alegria, Orr, Robert, Poley, Anne-Luise, Rousso, David, Ahad, Shah, Solaz Contell, Carles, Soldevila Serrano, Urmila, Staats, Ezekiel, Stack, Tynan Louis, Stelzer, Bernd, Ullan, Miguel, Zenz, Seth
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/18/03/T03008
http://cds.cern.ch/record/2835321
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author Unno, Yoshinobu
Abidi, Haider
Affolder, Tony
Allport, Philip Patrick
Beaupre, Scott Lee
Beck, Graham
Bernabeu Verdu, Jose
Bevan, Adrian
Chisholm, Andrew Stephen
Ciungu, Bianca Monica
Dawson, Ian
Dowling, Andrew Jay
Fadeyev, Vitaliy
Federicova, Pavla
Fernandez-Tejero, Xavi
Fleta Corral, Celeste
Fournier, Andrew Curtis
George, William Frederick
Gignac, Matthew
Gonella, Laura
Greig, Graham George
Hara, Kazuhiko
Hirose, Shigeki
Hommels, Bart
Ishii, Tatsuya
Jessiman, Callan
Johnson, Jacob Wayne
Jones, Dominic
Kachiguine, Serguei
Kang, Nathan Jihoon
Keller, John Stakely
Klein, Christoph Thomas
Koffas, Thomas
Kopsalis, Ioannis
Kroll, Jiri
Kvasnicka, Jiri
Lacasta Llacer, Carlos
Latonova, Vera
Lomas, Joshua David
Mikestikova, Marcela
Miyagawa, Paul
Alvira Torre, Elena Alegria
Orr, Robert
Poley, Anne-Luise
Rousso, David
Ahad, Shah
Solaz Contell, Carles
Soldevila Serrano, Urmila
Staats, Ezekiel
Stack, Tynan Louis
Stelzer, Bernd
Ullan, Miguel
Zenz, Seth
author_facet Unno, Yoshinobu
Abidi, Haider
Affolder, Tony
Allport, Philip Patrick
Beaupre, Scott Lee
Beck, Graham
Bernabeu Verdu, Jose
Bevan, Adrian
Chisholm, Andrew Stephen
Ciungu, Bianca Monica
Dawson, Ian
Dowling, Andrew Jay
Fadeyev, Vitaliy
Federicova, Pavla
Fernandez-Tejero, Xavi
Fleta Corral, Celeste
Fournier, Andrew Curtis
George, William Frederick
Gignac, Matthew
Gonella, Laura
Greig, Graham George
Hara, Kazuhiko
Hirose, Shigeki
Hommels, Bart
Ishii, Tatsuya
Jessiman, Callan
Johnson, Jacob Wayne
Jones, Dominic
Kachiguine, Serguei
Kang, Nathan Jihoon
Keller, John Stakely
Klein, Christoph Thomas
Koffas, Thomas
Kopsalis, Ioannis
Kroll, Jiri
Kvasnicka, Jiri
Lacasta Llacer, Carlos
Latonova, Vera
Lomas, Joshua David
Mikestikova, Marcela
Miyagawa, Paul
Alvira Torre, Elena Alegria
Orr, Robert
Poley, Anne-Luise
Rousso, David
Ahad, Shah
Solaz Contell, Carles
Soldevila Serrano, Urmila
Staats, Ezekiel
Stack, Tynan Louis
Stelzer, Bernd
Ullan, Miguel
Zenz, Seth
author_sort Unno, Yoshinobu
collection CERN
description The ATLAS experiment is constructing new all-silicon inner tracking system for HL-LHC. The strip detectors cover the radial extent of 40 to 100 cm. A new approach is adopted to use p-type silicon material, making the readout in n$^+$-strips, so-called n$^+$-in-p sensors. This allows for enhanced radiation tolerance against an order of magnitude higher particle fluence compared to the LHC. To cope with varying hit rates and occupancies as a function of radial distance, there are two barrel sensor types, the short strips (SS) for the inner 2 and the long strips (LS) for the outer 2 barrel cylinders, respectively. The barrel sensors exhibit a square, 9.8$\times$9.8 cm$^2$, geometry, the largest possible sensor area from a 6-inch wafer. The strips are laid out in parallel with a strip pitch of 75.5 µm and 4 or 2 rows of strip segments. The strips are AC-coupled and biased via polysilicon resistors. The endcap sensors employ a "stereo-annulus" geometry exhibiting a skewed-trapezoid shapes with circular edges. They are designed in 6 unique shapes, R0 to R5, corresponding to progressively increasing radial extents and which allows them to fit within the petal geometry and the 6-inch wafer maximally. The strips are in fan-out geometry with an in-built rotation angle, with a mean pitch of approximately 75 µm and 4 or 2 rows of strip segments. The eight sensor types are labeled as ATLAS18xx where xx stands for SS, LS, and R0 to R5. According to the mechanical and electrical specifications, CAD files for wafer processing were laid out, following the successful designs of prototype barrel and endcap sensors, together with a number of optimizations. A pre-production was carried out prior to the full production of the wafers. The quality of the sensors is reviewed and judged excellent through the test results carried out by vendor. These sensors are used for establishing acceptance procedures and to evaluate their performance in the ATLAS collaboration, and subsequently for pre-production of strip modules and stave and petal structures.
id cern-2835321
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28353212023-06-16T12:46:26Zdoi:10.1088/1748-0221/18/03/T03008http://cds.cern.ch/record/2835321engUnno, YoshinobuAbidi, HaiderAffolder, TonyAllport, Philip PatrickBeaupre, Scott LeeBeck, GrahamBernabeu Verdu, JoseBevan, AdrianChisholm, Andrew StephenCiungu, Bianca MonicaDawson, IanDowling, Andrew JayFadeyev, VitaliyFedericova, PavlaFernandez-Tejero, XaviFleta Corral, CelesteFournier, Andrew CurtisGeorge, William FrederickGignac, MatthewGonella, LauraGreig, Graham GeorgeHara, KazuhikoHirose, ShigekiHommels, BartIshii, TatsuyaJessiman, CallanJohnson, Jacob WayneJones, DominicKachiguine, SergueiKang, Nathan JihoonKeller, John StakelyKlein, Christoph ThomasKoffas, ThomasKopsalis, IoannisKroll, JiriKvasnicka, JiriLacasta Llacer, CarlosLatonova, VeraLomas, Joshua DavidMikestikova, MarcelaMiyagawa, PaulAlvira Torre, Elena AlegriaOrr, RobertPoley, Anne-LuiseRousso, DavidAhad, ShahSolaz Contell, CarlesSoldevila Serrano, UrmilaStaats, EzekielStack, Tynan LouisStelzer, BerndUllan, MiguelZenz, SethSpecifications and Pre-production of n$^{+}$-in-p Large-format Strip Sensors fabricated in 6-inch Silicon Wafers, ATLAS18, for the Inner Tracker of the ATLAS Detector for High-Luminosity Large Hadron ColliderParticle Physics - ExperimentThe ATLAS experiment is constructing new all-silicon inner tracking system for HL-LHC. The strip detectors cover the radial extent of 40 to 100 cm. A new approach is adopted to use p-type silicon material, making the readout in n$^+$-strips, so-called n$^+$-in-p sensors. This allows for enhanced radiation tolerance against an order of magnitude higher particle fluence compared to the LHC. To cope with varying hit rates and occupancies as a function of radial distance, there are two barrel sensor types, the short strips (SS) for the inner 2 and the long strips (LS) for the outer 2 barrel cylinders, respectively. The barrel sensors exhibit a square, 9.8$\times$9.8 cm$^2$, geometry, the largest possible sensor area from a 6-inch wafer. The strips are laid out in parallel with a strip pitch of 75.5 µm and 4 or 2 rows of strip segments. The strips are AC-coupled and biased via polysilicon resistors. The endcap sensors employ a "stereo-annulus" geometry exhibiting a skewed-trapezoid shapes with circular edges. They are designed in 6 unique shapes, R0 to R5, corresponding to progressively increasing radial extents and which allows them to fit within the petal geometry and the 6-inch wafer maximally. The strips are in fan-out geometry with an in-built rotation angle, with a mean pitch of approximately 75 µm and 4 or 2 rows of strip segments. The eight sensor types are labeled as ATLAS18xx where xx stands for SS, LS, and R0 to R5. According to the mechanical and electrical specifications, CAD files for wafer processing were laid out, following the successful designs of prototype barrel and endcap sensors, together with a number of optimizations. A pre-production was carried out prior to the full production of the wafers. The quality of the sensors is reviewed and judged excellent through the test results carried out by vendor. These sensors are used for establishing acceptance procedures and to evaluate their performance in the ATLAS collaboration, and subsequently for pre-production of strip modules and stave and petal structures.ATL-ITK-PROC-2022-016oai:cds.cern.ch:28353212022-10-01
spellingShingle Particle Physics - Experiment
Unno, Yoshinobu
Abidi, Haider
Affolder, Tony
Allport, Philip Patrick
Beaupre, Scott Lee
Beck, Graham
Bernabeu Verdu, Jose
Bevan, Adrian
Chisholm, Andrew Stephen
Ciungu, Bianca Monica
Dawson, Ian
Dowling, Andrew Jay
Fadeyev, Vitaliy
Federicova, Pavla
Fernandez-Tejero, Xavi
Fleta Corral, Celeste
Fournier, Andrew Curtis
George, William Frederick
Gignac, Matthew
Gonella, Laura
Greig, Graham George
Hara, Kazuhiko
Hirose, Shigeki
Hommels, Bart
Ishii, Tatsuya
Jessiman, Callan
Johnson, Jacob Wayne
Jones, Dominic
Kachiguine, Serguei
Kang, Nathan Jihoon
Keller, John Stakely
Klein, Christoph Thomas
Koffas, Thomas
Kopsalis, Ioannis
Kroll, Jiri
Kvasnicka, Jiri
Lacasta Llacer, Carlos
Latonova, Vera
Lomas, Joshua David
Mikestikova, Marcela
Miyagawa, Paul
Alvira Torre, Elena Alegria
Orr, Robert
Poley, Anne-Luise
Rousso, David
Ahad, Shah
Solaz Contell, Carles
Soldevila Serrano, Urmila
Staats, Ezekiel
Stack, Tynan Louis
Stelzer, Bernd
Ullan, Miguel
Zenz, Seth
Specifications and Pre-production of n$^{+}$-in-p Large-format Strip Sensors fabricated in 6-inch Silicon Wafers, ATLAS18, for the Inner Tracker of the ATLAS Detector for High-Luminosity Large Hadron Collider
title Specifications and Pre-production of n$^{+}$-in-p Large-format Strip Sensors fabricated in 6-inch Silicon Wafers, ATLAS18, for the Inner Tracker of the ATLAS Detector for High-Luminosity Large Hadron Collider
title_full Specifications and Pre-production of n$^{+}$-in-p Large-format Strip Sensors fabricated in 6-inch Silicon Wafers, ATLAS18, for the Inner Tracker of the ATLAS Detector for High-Luminosity Large Hadron Collider
title_fullStr Specifications and Pre-production of n$^{+}$-in-p Large-format Strip Sensors fabricated in 6-inch Silicon Wafers, ATLAS18, for the Inner Tracker of the ATLAS Detector for High-Luminosity Large Hadron Collider
title_full_unstemmed Specifications and Pre-production of n$^{+}$-in-p Large-format Strip Sensors fabricated in 6-inch Silicon Wafers, ATLAS18, for the Inner Tracker of the ATLAS Detector for High-Luminosity Large Hadron Collider
title_short Specifications and Pre-production of n$^{+}$-in-p Large-format Strip Sensors fabricated in 6-inch Silicon Wafers, ATLAS18, for the Inner Tracker of the ATLAS Detector for High-Luminosity Large Hadron Collider
title_sort specifications and pre-production of n$^{+}$-in-p large-format strip sensors fabricated in 6-inch silicon wafers, atlas18, for the inner tracker of the atlas detector for high-luminosity large hadron collider
topic Particle Physics - Experiment
url https://dx.doi.org/10.1088/1748-0221/18/03/T03008
http://cds.cern.ch/record/2835321
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