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The readout systems for the ATLAS silicon trackers and liquid argon calorimeters utilize vertical-cavity surface-emitting laser diodes to communicate between on and off detector readout components. A number of these VCSEL devices have…

Instrumentation and Detectors · Physics 2011-10-03 Mark S. Cooke

The high-luminosity phase of the Large Hadron Collider will provide 5-7 times greater luminosities than assumed in the original detector design. An improved trigger system requires an upgrade of the readout electronics of the ATLAS Liquid…

Instrumentation and Detectors · Physics 2020-09-16 Tiankuan Liu

An optical link system is being developed for the ATLAS Liquid Argon Calorimeter Phase-II upgrade. The optical link system is responsible for transmit the data of over 182 thousand detector channels from 1524 Front-End Boards (FEBs) through…

Instrumentation and Detectors · Physics 2020-08-03 B. Deng , C. Liu , D. Gong , X. Huang , S. Hou , T. Liu , H. Sun , L. Zhang , W. Zhang , J. Ye

The ATLAS liquid argon calorimeter has been operating continuously since August 2006. At this time, only part of the calorimeter was readout, but since the beginning of 2008, all calorimeter cells have been connected to the ATLAS readout…

Instrumentation and Detectors · Physics 2012-08-27 The ATLAS Collaboration

Two optical data link data transmission Application Specific Integrated Circuits (ASICs), the baseline and its backup, have been designed for the ATLAS Liquid Argon (LAr) Calorimeter Phase-I trigger upgrade. The latency of each ASIC and…

The liquid argon calorimeter is a key component of the ATLAS detector installed at the CERN Large Hadron Collider. The primary purpose of this calorimeter is the measurement of electrons and photons. It also provides a crucial input for…

High Energy Physics - Experiment · Physics 2014-07-25 ATLAS Collaboration

The ATLAS experiment is designed to study the proton-proton collisions produced at the Large Hadron Collider (LHC) at CERN. Liquid argon sampling calorimeters are used for all electromagnetic calorimetry as well as hadronic calorimetry in…

Instrumentation and Detectors · Physics 2013-07-05 Nikiforos Nikiforou

A prototype optical-link board has been developed for the ATLAS Liquid Argon Calorimeter Phase-2 upgrade. The board consists of 24 lpGBT chips and 8 VTRx+ modules and demonstrates the full optical link design of the future front-end board.…

Instrumentation and Detectors · Physics 2022-05-25 X. Huang , C. Liu , A. Deiana , B. Deng , D. Gong , L. Hasley , S. Hou , T. Liu , H. Sun , J. Ye , L. Zhang , W. Zhang

A selection of ATLAS liquid argon (LAr) calorimeter commissioning studies is presented. It includes a coherent noise study, a measurement of the quality of the ionization pulse shape prediction, and energy and time reconstruction analyses…

Instrumentation and Detectors · Physics 2019-08-13 Mark S. Cooke

The ATLAS liquid argon (LAr) calorimeter system consists of an electromagnetic barrel calorimeter and two end-caps with electromagnetic, hadronic and forward calorimeters. The construction of the full calorimeter system is completed since…

Instrumentation and Detectors · Physics 2019-08-14 Dominik Dannheim

The Phase-I trigger readout electronics upgrade of the ATLAS Liquid Argon calorimeters enhances the physics reach of the experiment during the upcoming operation at increasing Large Hadron Collider luminosities. The new system, installed…

Instrumentation and Detectors · Physics 2022-05-17 G. Aad , A. V. Akimov , K. Al Khoury , M. Aleksa , T. Andeen , C. Anelli , N. Aranzabal , C. Armijo , A. Bagulia , J. Ban , T. Barillari , F. Bellachia , M. Benoit , F. Bernon , A. Berthold , H. Bervas , D. Besin , A. Betti , Y. Bianga , M. Biaut , D. Boline , J. Boudreau , T. Bouedo , N. Braam , M. Cano Bret , G. Brooijmans , H. Cai , C. Camincher , A. Camplani , S. Cap , A. Carbone , J. W. S. Carter , S. V. Chekulaev , H. Chen , K. Chen , N. Chevillot , M. Citterio , B. Cleland , M. Constable , S. de Jong , A. M. Deiana , M. Delmastro , B. Deng , H. Deschamps , C. Diaconu , A. Dik , B. Dinkespiler , N. Dumont Dayot , A. Emerman , Y. Enari , P. J. Falke , J. Farrell , W. Fielitz , E. Fortin , J. Fragnaud , S. Franchino , L. Gantel , K. Gigliotti , D. Gong , A. Grabas , P. Grohs , N. Guettouche , T. Guillemin , D. Guo , J. Guo , L. Hasley , C. Hayes , R. Hentges , L. Hervas , M. Hils , J. Hobbs , A. Hoffman , D. Hoffmann , P. Horn , T. Hryn'ova , L. Iconomidou-Fayard , R. Iguchi , T. James , K. Johns , T. Junkermann , C. Kahra , E. F. Kay , R. Keeler , S. Ketabchi Haghighat , P. Kinget , E. Knoops , A. Kolbasin , P. Krieger , J. Kuppambatti , L. L. Kurchaninov , E. Ladygin , S. Lafrasse , M. P. J. Landon , F. Lanni , S. Latorre , D. Laugier , M. Lazzaroni , X. Le , P. Le Bourlout , C. A. Lee , M. Lefebvre , M. A. L. Leite , C. Leroy , X. Li , Z. Li , F. Liang , H. Liu , C. Liu , T. Liu , H. Ma , L. L. Ma , D. J. Mahon , U. Mallik , B. Mansoulie , A. L. Maslennikov , N. Matsuzawa , R. A. McPherson , S. Menke , A. Milic , Y. Minami , E. Molina , E. Monnier , N. Morange , L. Morvaj , J. Mueller , C. Mwewa , R. Narayan , N. Nikiforou , I. Ochoa , R. Oishi , D. Oliveira Damazio , R. E. Owen , C. Pancake , D. K. Panchal , G. Perrot , M. -A. Pleier , P. Poffenberger , R. Porter , S. Quan , J. Rabel , A. Roy , J. P. Rutherfoord , F. Sabatini , F. Salomon , E. Sauvan , A. C. Schaffer , R. D. Schamberger , Ph. Schwemling , C. Secord , L. Selem , K. Sexton , E. Shafto , M. V. Silva Oliveira , S. Simion , S. Singh , W. Sippach , A. A. Snesarev , S. Snyder , M. Spalla , S. Stärz , A. Straessner , P. Strizenec , R. Stroynowski , V. V. Sulin , J. Tanaka , S. Tang , S. Tapprogge , G. F. Tartarelli , G. Tateno , K. Terashi , S. Tisserant , D. Tompkins , G. Unal , M. Unal , K. Uno , A. Vallier , S. Vieira de Souza , R. Walker , Q. Wang , C. Wang , R. Wang , M. Wessels , I. Wingerter-Seez , K. Wolniewicz , W. Wu , Z. Xiandong , R. Xu , H. Xu , S. Yamamoto , Y. Yang , J. Ye , H. Zaghia , J. Zang , T. Zhang , H. L. Zhu , V. Zhulanov , E. Zonca , G. Zuk

We present the procedures and results of the quality control tests for the front-end optical link components in the ATLAS Liquid Argon Calorimeter Phase-1 upgrade. The components include a Vertical-Cavity Surface-Emitting Laser (VCSEL)…

The increased particle flux at the high luminosity phase of the Large Hadron Collider (HL-LHC), with instantaneous luminosities of up to 7.5 times the original design value, will have an impact on many sub-systems of the ATLAS detector.…

Instrumentation and Detectors · Physics 2016-12-22 Thomas G. McCarthy

This paper presents several component prototypes towards a low-latency, small-form-factor optical link designed for the ATLAS Liquid Argon Calorimeter Phase-I trigger upgrade. A prototype of the custom-made dual-channel optical transmitter…

ATLAS has chosen for its Hadronic End-Cap Calorimeter (HEC) the copper-liquid argon sampling technique with flat plate geometry and GaAs pre-amplifiers in the argon. The contruction of the calorimeter is now approaching completion. Results…

Instrumentation and Detectors · Physics 2014-11-18 T. Barillari

Liquid argon detectors are ubiquitous in particle, astroparticle, and applied physics. They reached an unprecedented level of maturity thanks to more than 20 years of R&D and the operation of large-scale facilities at CERN, Fermilab, and…

Instrumentation and Detectors · Physics 2024-10-30 W. M. Bonivento , F. Terranova

The purpose, design specifications, construction techniques, and testing methods are described for the high voltage feedthrough ports and filters of the ATLAS Liquid Argon calorimeters. These feedthroughs carry about 5000 high voltage wires…

Instrumentation and Detectors · Physics 2008-11-26 B. Botchev , G. Finocchiaro , J. Hoffman , R. L. McCarthy , M. Rijssenbeek , J. Steffens , A. Talalaevskii , M. Thioye , M. Zdrazil , J. Farrell , S. Kane

The in-situ commissioning of the ATLAS liquid argon calorimeter is taking place since three years. During this period, it has been fully tested by means of frequent calibration runs, and the analysis of the large cosmic muon data samples…

Instrumentation and Detectors · Physics 2015-03-17 S. Laplace

A Liquid-argon Trigger Digitizer Board (LTDB) is being developed to upgrade the ATLAS Liquid Argon Calorimeter Phase-I trigger electronics. The LTDB located at the front end needs to obtain the clock signals and be configured and monitored…

A number of critical active and passive components of optical links have been tested at 77 K or lower temperatures, demonstrating potential development of optical links operating inside the liquid argon time projection chamber (LArTPC)…

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