English
Related papers

Related papers: A new CMS pixel detector for the LHC luminosity up…

200 papers

Following the Phase-II upgrade during Long Shutdown (LS3), the LHC aims to reach a peak instantaneous luminosity of $7.5\times 10^{34}$cm$^{-2}$s$^{-1}$, which corresponds to an average of around 200 inelastic proton-proton collisions per…

The foreseen upgrade of the LHC to its high luminosity phase (HL-LHC), will maximize the physics potential of the facility. The upgrade is expected to increase the instantaneous luminosity by a factor of 5 and deliver an integrated…

Instrumentation and Detectors · Physics 2018-12-19 Timo Peltola

In preparation for the High Luminosity LHC, the entire tracker detector of the CMS experiment will be exchanged as part of the Phase-2 Upgrade. The new Outer Tracker will comprise approximately 13,000 silicon sensor modules, of which 7608…

Instrumentation and Detectors · Physics 2022-05-25 F. Zhang , G. Blanchot , S. Higginbotham , A. Honma , A. Kalogeropoulos , M. Kovacs , A. La Rosa , S. Nasr

The upgrade of the Inner Tracking System (ITS) of ALICE is planned for the second long shutdown of the LHC in 2019-2020. The ALICE physics program after the shutdown requires the ITS to have improved tracking capabilities and improved…

Instrumentation and Detectors · Physics 2015-11-30 Monika Kofarago

The LHC Phase-II upgrade will lead to a significant increase in luminosity, which in turn will bring new challenges for the operation of inner tracking detectors. A possible solution is to use active silicon sensors, taking advantage of…

The pixel detectors for the High Luminosity upgrades of the ATLAS and CMS detectors will preserve digitized charge information in spite of extremely high hit rates. Both circuit physical size and output bandwidth will limit the number of…

Instrumentation and Detectors · Physics 2018-09-26 Yitian Chen , Evan Frangipane , Maurice Garcia-Sciveres , Laura Jeanty , Benjamin Nachman , Simone Pagan Griso , Fuyue Wang

A novel concept to enhance the photo-detection efficiency (PDE) of silicon photomultipliers (SiPMs) has been applied and remarkable positive results can be reported. This concept uses arrays of microlenses to cover every second SiPM pixel…

CMOS Pixel Sensors tend to become relevant for a growing spectrum of charged particle detection instruments. This comes mainly from their high granularity and low material budget. However, several potential applications require a higher…

The LHCb detector will be upgraded to make more efficient use of the available luminosity at the LHC in Run III and extend its potential for discovery. The Ring Imaging Cherenkov detectors are key components of the LHCb detector for…

LHC will offer the opportunity of probing the mass scale of the electro-weak symmetry breaking. Thus we expect to uncover direct manifestations of physics beyond the Standard Model, which will raise new questions that may be elucidated by…

Instrumentation and Detectors · Physics 2009-03-10 Marina Artuso

An efficient and precise reconstruction of charged-particle tracks is crucial for the overall performance of the CMS experiment. During Run 2 of LHC, significant upgrades were made to the track reconstruction algorithms in order to…

Instrumentation and Detectors · Physics 2020-12-15 Walaa Elmetenawee

The ATLAS experiment pixel detector upgrade plans are focused on development of new technology, including the FE-I4 readout integrated circuit. The first upgrade project to make use of this new technology is an "Insertable B-Layer" (IBL)…

Instrumentation and Detectors · Physics 2011-09-23 M. Garcia-Sciveres , ATLAS Collaboration

The apparatus of the ALICE experiment at CERN will be upgraded in 2017/18 during the second long shutdown of the LHC (LS2). A major motivation for this upgrade is to extend the physics reach for charmed and beauty particles down to low…

The LHCb detector has been designed to study CP violation and other rare phenomena in B-meson decays up to a luminosity of $\sim 5.10^{32}\rm cm^{-2}s^{-1}$. This paper will describe what is limiting LHCb to exploit the much higher…

High Energy Physics - Experiment · Physics 2008-11-26 H. Dijkstra

The CMS Beam Conditions and Radiation Monitoring System, BRM, will support beam tuning, protect the CMS detector from adverse beam conditions, and measure the accumulated dose close to or inside all sub-detectors. It is composed of…

Instrumentation and Detectors · Physics 2014-11-20 A. Bell , E. Castro , R. Hall-Wilton , W. Lange , W. Lohmann , A. Macpherson , M. Ohlerich , N. Rodriguez , V. Ryjov , R. S. Schmidt , R. L. Stone

CMOS sensors were successfully implemented in the STAR tracker [1]. LHC experiments have shown that efficient b tagging, reconstruction of displaced vertices and identification of disappearing tracks are necessary. An improved vertex…

Instrumentation and Detectors · Physics 2021-05-21 Nicolas T. Fourches , Geraldine Hallais , Charles Renard

The electromagnetic ealorimeter (ECAL) of the CMS detector has played an important role in the physics program of the experiment, delivering outstanding performance throughout data taking. The High-Luminosity LHC will pose new challenges.…

Instrumentation and Detectors · Physics 2021-06-10 Stefano Argiro

After a ten years planning and construction phase, the ATLAS pixel detector is nearing its completion and is scheduled to be integrated into the ATLAS detector to take data with the first LHC collisions in 2007. An overview of the…

Instrumentation and Detectors · Physics 2008-11-26 M. Cristinziani

Future space-based X-ray telescope missions are likely to have significantly increased demands on detector read out rates due to increased collection area, and there will be a desire to minimize radiation damage in the interests of…

Instrumentation and Methods for Astrophysics · Physics 2015-06-05 Abe D. Falcone , Zachary Prieskorn , Christopher Griffith , Stephen Bongiorno , David N. Burrows

We report on recent progress and next steps in the design of the proposed MATHUSLA Long Lived Particle (LLP) detector for the HL-LHC as part of the Snowmass 2021 process. Our understanding of backgrounds has greatly improved, aided by…

High Energy Physics - Experiment · Physics 2023-03-31 Cristiano Alpigiani , Juan Carlos Arteaga-Velázquez , Austin Ball , Liron Barak , Jared Barron , Brian Batell , James Beacham , Yan Benhammo , Benjamin Brau , Karen Salomé Caballero-Mora , Paolo Camarri , Roberto Cardarelli , John Paul Chou , Wentao Cui , David Curtin , Miriam Diamond , Keith R. Dienes , Liam Andrew Dougherty , William Dougherty , Marco Drewes , Sameer Erramilli , Rouven Essig , Erez Etzion , Jared Evans , Arturo Fernández Téllez , Grace Finlayson , Oliver Fischer , Jim Freeman , Jonathan Gall , Ali Garabaglu , Aran Garcia-Bellido , Stefano Giagu , Bhawna Gomber , Stephen Elliott Greenberg , Roberto Guida , Andy Haas , Bahgat Hassan , Yuekun Heng , Shih-Chieh Hsu , Keegan Humphrey , Giuseppe Iaselli , Ken Johns , Audrey Kvam , Dragoslav Lazic , Liang Li , Jiahao Liao , Barbara Liberti , Zhen Liu , Henry Lubatti , Lillian Luo , Giovanni Marsella , Mario Iván Martínez Hernández , Matthew McCullough , David McKeen , Patrick Meade , Gilad Mizrachi , O. G. Morales-Olivares , David Morrissey , Ljiljana Morvai , Meny Raviv Moshe , Michalis Panagiotou , Mason Proffitt , Dennis Cazar Ramirez , Matthew Reece , Steven H. Robertson , Mario Rodríguez-Cahuantzi , Albert de Roeck , Amber Roepe , Larry Ruckman , James John Russell , Heather Russell , Halil Saka , Rinaldo Santonico , Marco Schioppa , Giuseppe Di Sciascio , Jessie Shelton , Brian Shuve , Yiftah Silver , Luigi Di Stante , Daniel Stolarski , Mike Strauss , David Strom , John Stupak , Martin A. Subieta Vasquez , Sanjay Kumar Swain , Chin Lung Tan , Guillermo Tejeda Muñoz , Steffie Ann Thayil , Brooks Thomas , Emma Torro , Yuhsin Tsai , Gordon Watts , Zijun Xu , Charles Young , Igor Zolkin , Jose Zurita