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1.
Comparison of Iron and Tungsten Absorber Structures for an Analog Hadron Calorimeter / Günter, Clemens
Future electron-positron-collider experiments will require unprecedented jet-energy resolution to complete their physics programs [...]
DESY-THESIS-2015-018. - Hamburg : Verlag Deutsches Elektronen-Synchrotron, 2015. - 169 p.


10.3204/DESY-THESIS-2015-018
DESY server - Fulltext
2.
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
3.
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
4.
Hadron shower decomposition in the highly granular CALICE analogue hadron calorimeter / CALICE Collaboration
The spatial development of hadronic showers in the CALICE scintillator-steel analogue hadron calorimeter is studied using test beam data collected at CERN and FNAL for single positive pions and protons with initial momenta in the range from 10 to 80 GeV/c. Both longitudinal and radial development of hadron showers are parametrised with two-component functions. [...]
arXiv:1602.08578; CALICE-PUB-2016-002.- 2016-06-23 - 38 p. - Published in : JINST 11 (2016) P06013 Fulltext: arXiv:1602.08578 - PDF; 10.1088_1748-0221_11_06_P06013 - PDF; IOP Open Access article: PDF; External link: Preprint
5.
Pion and proton showers in the CALICE scintillator-steel analogue hadron calorimeter / CALICE Collaboration
Showers produced by positive hadrons in the highly granular CALICE scintillator-steel analogue hadron calorimeter were studied. The experimental data were collected at CERN and FNAL for single particles with initial momenta from 10 to 80 GeV/c. [...]
arXiv:1412.2653; CALICE-PUB-2014-003; CALICE-CAN-2013-001; CALICE Analysis Note CAN-040; CALICE Analysis Note CAN-040a; CALICE Analysis Note CAN-040b.- Geneva : CERN, 2015-04-28 - 25 p. - Published in : JINST 10 (2015) P04014 Addendum CAN-040a: PDF; Addendum CAN-040b: PDF; CALICE Note: PDF; Fulltext: AIDA-PUB-2014-027 - PDF; arXiv:1412.2653 - PDF; IOP Open Access article: PDF; External link: Preprint
6.
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
7.
Calorimetry for Lepton Collider Experiments – CALICE results and activities / CALICE Collaboration
The CALICE collaboration conducts calorimeter R&D for highly granular calorimeters, mainly for their application in detectors for a future lepton collider at the TeV scale. [...]
arXiv:1212.5127.
- 2012. - 73 p.
Full text - Preprint - Full text
8.
The Time Structure of Hadronic Showers in Highly Granular Calorimeters with Tungsten and Steel Absorbers / CALICE Collaboration
The intrinsic time structure of hadronic showers influences the timing capability and the required integration time of hadronic calorimeters in particle physics experiments, and depends on the active medium and on the absorber of the calorimeter. With the CALICE T3B experiment, a setup of 15 small plastic scintillator tiles read out with Silicon Photomultipliers, the time structure of showers is measured on a statistical basis with high spatial and temporal resolution in sampling calorimeters with tungsten and steel absorbers. [...]
arXiv:1404.6454; MPP-2014-147; CALICE-PUB-2014-001; MPP-2014-147.- Geneva : CERN, 2014 - 22 p. - Published in : JINST 9 (2014) P07022 AIDA fulltext: PDF; Fulltext: PDF; IOP Open Access article: PDF; External link: Preprint
9.
Shower development of particles with momenta from 1 to 10 GeV in the CALICE Scintillator-Tungsten HCAL / CALICE Collaboration
We present a study of the showers initiated by low momentum (p 10 GeV) electrons, pions and protons in the highly granular CALICE scintillator-tungsten HCAL. The data were taken at the CERN PS in September-October 2010. [...]
arXiv:1311.3505; CALICE-CAN-2012-001; CALICE Analysis Note CAN-036; AIDA-PUB-2014-004; CALICE-PUB-2013-003.- Geneva : CERN, 2014-01-10 - 28 p. - Published in : JINST 9 (2014) P01004 CALICE Note: PDF; Fulltext: PDF; IOP Open Access article: PDF; External link: Preprint
10.
Shower development of particles with momenta from 15 GeV to 150 GeV in the CALICE scintillator-tungsten hadronic calorimeter / CALICE collaboration
We present a study of showers initiated by electrons, pions, kaons, and protons with momenta from 15 GeV to 150 GeV in the highly granular CALICE scintillator-tungsten analogue hadronic calorimeter. The data were recorded at the CERN Super Proton Synchrotron in 2011. [...]
arXiv:1509.00617; CALICE-PUB-2015-001; LCD-Note-2013-002; AIDA-NOTE-2015-011; CALICE Analysis Note CAN-044; CALICE-CAN-2013-005; AIDA-NOTE-2015-011.- Geneva : CERN, 2015-12-10 - 35 p. - Published in : JINST 10 (2015) P12006 Fulltext: 10.1088_1748-0221_10_12_P12006 - PDF; AIDA-NOTE-2015-011 - PDF; arXiv:1509.00617 - PDF; LCD Note: PDF;

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