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1.
Testing Hadronic Interaction Models using a Highly Granular Silicon-Tungsten Calorimeter / CALICE Collaboration
A detailed study of hadronic interactions is presented using data recorded with the highly granular CALICE silicon-tungsten electromagnetic calorimeter. Approximately 350,000 selected negatively charged pion events at energies between 2 and 10 GeV have been studied. [...]
arXiv:1411.7215; CALICE-PUB-2014-002.- Geneva : CERN, 2015-09-11 - 15 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 794 (2015) 240-254 Elsevier Open Access article: PDF; Fulltext: arXiv:1411.7215 - PDF; AIDA-PUB-2014-024 - PDF; External link: Preprint
2.
Hadronic Energy Resolution of a Combined High Granularity Scintillator Calorimeter System / CALICE Collaboration
This paper presents results obtained with the combined CALICE Scintillator Electromagnetic Calorimeter, Analogue Hadronic Calorimeter and Tail Catcher & Muon Tracker, three high granularity scintillator-SiPM calorimeter prototypes. The response of the system to pions with momenta between 4 GeV/c and 32 GeV/c is analysed, including the energy response, resolution, and longitudinal shower profiles. [...]
arXiv:1809.03909; CALICE-PUB-2018-001.- 2018-12-17 - 33 p. - Published in : JINST 13 (2018) P12022 Fulltext: 1809.03909 - PDF; fulltext1693584 - PDF; Fulltext from Publisher: PDF;
3.
CALICE Report to the DESY Physics Research Committee / CALICE Collaboration
We present an overview of the CALICE activities on calorimeter development for a future linear collider. [...]
arXiv:1105.0511.
- 2011. - 71 p.
Preprint - Full text
4.
Analysis of Testbeam Data of the Highly Granular RPC-Steel CALICE Digital Hadron Calorimeter and Validation of Geant4 Monte Carlo Models / CALICE Collaboration
We present a study of the response of the highly granular Digital Hadronic Calorimeter with steel absorbers, the Fe-DHCAL, to positrons, muons, and pions with momenta ranging from 2 to 60 GeV/c. Developed in the context of the CALICE collaboration, this hadron calorimeter utilises Resistive Plate Chambers as active media, interspersed with steel absorber plates. [...]
arXiv:1901.08818; CALICE-PUB-2019-001.- 2019-09-21 - 17 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 939 (2019) 89-105 Fulltext: PDF;
5.
Construction and Response of a Highly Granular Scintillator-based Electromagnetic Calorimeter / CALICE Collaboration
A highly granular electromagnetic calorimeter with scintillator strip readout is being developed for future lepton collider experiments. A prototype of 21.5 $X_0$ depth and $180 \times 180 $mm$^2$ transverse dimensions was constructed, consisting of 2160 individually read out $10 \times 45 \times 3$ mm$^3$ scintillator strips. [...]
arXiv:1707.07126; CALICE-PUB-2017-002.- 2018-04-11 - 19 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 887 (2018) 150-168 Fulltext: PDF;
6.
DHCAL with Minimal Absorber: Measurements with Positrons / CALICE Collaboration
In special tests, the active layers of the CALICE Digital Hadron Calorimeter prototype, the DHCAL, were exposed to low energy particle beams, without being interleaved by absorber plates. The thickness of each layer corresponded approximately to 0.29 radiation lengths or 0.034 nuclear interaction lengths, defined mostly by the copper and steel skins of the detector cassettes. [...]
arXiv:1603.01652; CALICE-PUB-2016-003.- 2016-05-13 - 24 p. - Published in : JINST 11 (2016) P05008 Fulltext: PDF; IOP Open Access article: PDF; External link: Preprint
7.
Commissioning and operation of the Cherenkov detector for proton Flux Measurement of the UA9 Experiment / Addesa, F.M. (INFN, Rome) ; Burmistrov, L. (Orsay, LAL) ; Breton, D. (Orsay, LAL) ; Cavoto, G. (INFN, Rome ; Rome U.) ; Chaumat, V. (Orsay, LAL) ; Dubos, S. (Orsay, LAL) ; Esposito, L. (CERN) ; Galluccio, F. (INFN, Naples) ; Garattini, M. (CERN ; Imperial Coll., London) ; Iacoangeli, F. (INFN, Rome) et al.
The UA9 Experiment at CERN-SPS investigates channeling processes in bent silicon crystals with the aim to manipulate hadron beams. Monitoring and characterization of channeled beams in the high energy accelerators environment ideally requires in-vacuum and radiation hard detectors. [...]
arXiv:1904.06178.- 2019-12-01 - 25 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 946 (2019) 162513 Fulltext: PDF;
8.
EUDAQ2 -- A Flexible Data Acquisition Software Framework for Common Test BeamsEUDAQ2—A flexible data acquisition software framework for common test beams / Liu, Y. (DESY) ; Amjad, M.S. (University Coll. London) ; Baesso, P. (Bristol U.) ; Cussans, D. (Bristol U.) ; Dreyling-Eschweiler, J. (DESY) ; Ete, R. (DESY) ; Gregor, I. (DESY) ; Huth, L. (DESY) ; Irles, A. (Orsay, LAL) ; Jansen, H. (DESY) et al.
The data acquisition software framework, EUDAQ, was originally developed to read out data from the EUDET-type pixel telescopes. This was successfully used in many test beam campaigns in which an external position and time reference were required. [...]
arXiv:1907.10600.- Geneva : CERN, 2019-10-23 - 17 p. - Published in : JINST 14 (2019) P10033-P10033 Fulltext: fulltext1746258 - PDF; 1907.10600 - PDF; Fulltext from Publisher: PDF; Fulltext from publisher: PDF;
9.
EUDAQ $-$ A Data Acquisition Software Framework for Common Beam Telescopes / Ahlburg, P. (Bonn U.) ; Arfaoui, S. (CERN) ; Arling, J.-H (DESY) ; Augustin, H. (Heidelberg U.) ; Barney, D. (CERN) ; Benoit, M. (Geneva U.) ; Bisanz, T. (Gottingen U., II. Phys. Inst.) ; Corrin, E. (Geneva U.) ; Cussans, D. (Bristol U.) ; Dannheim, D. (CERN) et al.
EUDAQ is a generic data acquisition software developed for use in conjunction with common beam telescopes at charged particle beam lines. Providing high-precision reference tracks for performance studies of new sensors, beam telescopes are essential for the research and development towards future detectors for high-energy physics. [...]
arXiv:1909.13725.- 2020-01-30 - 30 p. - Published in : JINST 15 (2020) P01038 Fulltext: fulltext1756754 - PDF; 1909.13725 - PDF;
10.
Resistive Plate Chamber Digitization in a Hadronic Shower Environment / CALICE Collaboration
The CALICE Semi-Digital Hadron Calorimeter (SDHCAL) technological prototype is a sampling calorimeter using Glass Resistive Plate Chamber detectors with a three-threshold readout as the active medium. This technology is one of the two options proposed for the hadron calorimeter of the International Large Detector for the International Linear Collider. [...]
arXiv:1604.04550; CALICE-PUB-2016-004; CALICE Analysis Note CAN-053; CALICE-CAN-2016-002.- 2016-06-28 - 24 p. - Published in : JINST 11 (2016) P06014 Fulltext: arXiv:1604.04550 - PDF; 10.1088_1748-0221_11_06_P06014 - PDF; IOP Open Access article: PDF; Link to CALICE Note: PDF; External link: Preprint

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