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The CMS endcap calorimeter upgrade for the High Luminosity LHC in 2027 uses silicon sensors to achieve radiation tolerance, with the further benefit of a very high readout granularity. Small scintillator tiles with individual SiPM readout…

Instrumentation and Detectors · Physics 2020-06-11 Antonio Di Pilato , Ziheng Chen , Felice Pantaleo , Marco Rovere

The High Luminosity LHC (HL-LHC) will integrate 10 times more luminosity than the LHC, posing significant challenges for radiation tolerance and event pileup on detectors, especially for forward calorimetry, and hallmarks the issue for…

Instrumentation and Detectors · Physics 2018-07-01 Florian Pitters

The High Luminosity LHC (HL-LHC) will integrate 10 times more luminosity than the LHC, posing significant challenges for radiation tolerance and event pileup on detectors, especially for forward calorimetry, and hallmarks the issue for…

Instrumentation and Detectors · Physics 2018-02-18 Arabella Martelli

We present the current stage of research progress towards a one-pass, completely Machine Learning (ML) based imaging calorimeter reconstruction. The model used is based on Graph Neural Networks (GNNs) and directly analyzes the hits in each…

Machine learning (ML) plays an increasingly important role in both online and offline event reconstruction and identification at CMS experiment. A variety of ML techniques are used to improve the identification of physics objects. Dedicated…

High Energy Physics - Experiment · Physics 2026-02-10 Uttiya Sarkar

The CMS Collaboration is preparing to build replacement endcap calorimeters for the HL-LHC era. The new high-granularity calorimeter (HGCAL) is, as the name implies, a highly-granular sampling calorimeter with approximately six million…

Instrumentation and Detectors · Physics 2022-12-21 Thorben Quast

The high-luminosity upgrade of the LHC will come with unprecedented physics and computing challenges. One of these challenges is the accurate reconstruction of particles in events with up to 200 simultaneous proton-proton interactions. The…

Instrumentation and Detectors · Physics 2021-06-04 Shah Rukh Qasim , Kenneth Long , Jan Kieseler , Maurizio Pierini , Raheel Nawaz

The existing CMS endcap calorimeters will be replaced with a High Granularity Calorimeter (HGCAL) for operation at the High Luminosity (HL) LHC. Radiation hardness and excellent physics performance will be achieved by utilising silicon pad…

Instrumentation and Detectors · Physics 2020-08-26 Artur Lobanov

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

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

While the CMS experiment is currently harvesting LHC collision data at CERN, the performance of its electromagnetic calorimeter (ECAL) is being constantly monitored, and work has started to assess the need for changes to the detector to…

Instrumentation and Detectors · Physics 2019-08-13 Francesca Nessi Tedaldi

The CMS detector will undergo significant improvements to face the 10-fold increase in integrated luminosity of LHC, the so-called High-Luminosity LHC, scheduled to start in 2027. This will include a completely new calorimeter in the CMS…

Instrumentation and Detectors · Physics 2020-06-24 Erica Brondolin

Data analyses in particle physics rely on an accurate simulation of particle collisions and a detailed simulation of detector effects to extract physics knowledge from the recorded data. Event generators together with a GEANT-based…

High Energy Physics - Experiment · Physics 2025-05-12 CMS Collaboration

High-Luminosity running at the LHC, which is planned for 2022 and beyond, will imply an order of magnitude increase in radiation levels and particle fluences with respect to the present LHC running conditions. The performance evolution of…

Instrumentation and Detectors · Physics 2014-09-11 Andrea Massironi

The HL-LHC and the corresponding detector upgrades for the CMS experiment will present extreme challenges for the full simulation. In particular, increased precision in models of physics processes may be required for accurate reproduction…

Computational Physics · Physics 2020-11-19 Kevin Pedro

The installation of the High-Luminosity Large Hadron Collider (HL-LHC) presents unprecedented challenges to experiments like the Compact Muon Solenoid (CMS) in terms of event rate, integrated luminosity and therefore radiation exposures. To…

Instrumentation and Detectors · Physics 2020-08-26 Peter Paulitsch

As part of its HL-LHC upgrade program, CMS is developing a High Granularity Calorimeter (HGCAL) to replace the existing endcap calorimeters. The HGCAL will be realised as a sampling calorimeter, including an electromagnetic compartment…

Instrumentation and Detectors · Physics 2018-03-14 Thorben Quast

We present a new publicly available dataset that contains simulated data of a novel calorimeter to be installed at the CERN Large Hadron Collider. This detector will have more than six-million channels with each channel capable of position,…

High Energy Physics - Experiment · Physics 2023-09-14 Roger Rusack , Bhargav Joshi , Alpana Alpana , Seema Sharma , Thomas Vadnais

Advanced detector R&D for both new and ongoing experiments in HEP requires performing computationally intensive and detailed simulations as part of the detector-design optimisation process. We propose a versatile approach to this task that…

Instrumentation and Detectors · Physics 2020-05-19 Alexey Boldyrev , Denis Derkach , Fedor Ratnikov , Andrey Shevelev

A novel method to reconstruct the energy of hadronic showers in the CMS High Granularity Calorimeter (HGCAL) is presented. The HGCAL is a sampling calorimeter with very fine transverse and longitudinal granularity. The active media are…

Instrumentation and Detectors · Physics 2024-12-20 M. Aamir , G. Adamov , T. Adams , C. Adloff , S. Afanasiev , C. Agrawal , C. Agrawal , A. Ahmad , H. A. Ahmed , S. Akbar , N. Akchurin , B. Akgul , B. Akgun , R. O. Akpinar , E. Aktas , A. Al Kadhim , V. Alexakhin , J. Alimena , J. Alison , A. Alpana , W. Alshehri , P. Alvarez Dominguez , M. Alyari , C. Amendola , R. B. Amir , S. B. Andersen , Y. Andreev , P. D. Antoszczuk , U. Aras , L. Ardila , P. Aspell , M. Avila , I. Awad , O. Aydilek , Z. Azimi , A. Aznar Pretel , O. A. Bach , R. Bainbridge , A. Bakshi , B. Bam , S. Banerjee , D. Barney , O. Bayraktar , F. Beaudette , F. Beaujean , E. Becheva , P. K. Behera , A. Belloni , T. Bergauer , M. Besancon , O. Bessidskaia Bylund , L. Bhatt , S. Bhattacharya , D. Bhowmil , F. Blekman , P. Blinov , P. Bloch , A. Bodek , a. Boger , A. Bonnemaison , F. Bouyjou , L. Brennan , E. Brondolin , A. Brusamolino , I. Bubanja , A. Buchot Perraguin , P. Bunin , A. Burazin Misura , A. Butler-nalin , A. Cakir , S. Callier , S. Campbell , Y. B. Candemir , K. Canderan , K. Cankocak , A. Cappati , S. Caregari , S. Carron , C. Carty , A. Cauchois , L. Ceard , S. Cerci , P. J. Chang , R. M. Chatterjee , S. Chatterjee , P. Chattopadhyay , T. Chatzistavrou , M. S. Chaudhary , J. A. Chen , J. Chen , Y. Chen , K. Cheng , H. Cheung , J. Chhikara , A. Chiron , M. Chiusi , D. Chokheli , R. Chudasama , E. Clement , S. Coco Mendez , D. Coko , K. Coskun , F. Couderc , B. Crossman , Z. Cui , T. Cuisset , G. Cummings , E. M. Curtis , M. D'Alfonso , J. Döhler-Ball , O. Dadazhanova , J. Damgov , I. Das , S. Das Gupta , P. Dauncey , A. David Tinoco Mendes , G. Davies , O. Davignon , P. de Barbaro , C. De La Taille , M. De Silva , A. De Wit , P. Debbins , M. M. Defranchis , E. Delagnes , P. Devouge , G. Di Guglielmo , L. Diehl , K. Dilsiz , G. G. Dincer , J. Dittmann , M. Dragicevic , D. Du , B. Dubinchik , S. Dugad , F. Dulucq , I. Dumanoglu , B. Duran , S. Dutta , V. Dutta , A. 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Hinzmann , J. Hirschauer , D. Hitlin , J. Hoff , İ. Hos , B. Hou , X. Hou , A. Howard , C. Howe , H. Hsieh , T. Hsu , H. Hua , F. Hummer , M. Imran , J. Incandela , E. Iren , B. Isildak , P. S. Jackson , W. J. Jackson , S. Jain , P. Jana , J. Jaroslavceva , S. Jena , A. Jige , P. P. Jordano , U. Joshi , K. Kaadze , V. Kachanov , A. Kafizov , L. Kalipoliti , A. Kallil Tharayil , O. Kaluzinska , S. Kamble , A. Kaminskiy , M. Kanemura , H. Kanso , Y. Kao , A. Kapic , C. Kapsiak , V. Karjavine , S. Karmakar , A. Karneyeu , M. Kaya , A. Kayis Topaksu , B. Kaynak , Y. Kazhykarim , F. A. Khan , A. Khudiakov , J. Kieseler , R. S. Kim , T. Klijnsma , E. G. Kloiber , M. Klute , Z. Kocak , K. R. Kodali , K. Koetz , T. Kolberg , O. B. Kolcu , J. R. Komaragiri , M. Komm , I. Kopsalis , H. A. Krause , M. A. Krawczyk , T. R. Krishnaswamy Vinayakam , K. Kristiansen , A. Kristic , M. Krohn , B. Kronheim , K. Krüger , C. Kudtarkar , S. Kulis , M. Kumar , N. Kumar , S. Kumar , R. Kumar Verma , S. 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