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1.
First radiation hardness results of the TeraPixel Active Calorimeter (TPAC) sensor / Price, T (Birmingham U.) ; Coath, R (Rutherford) ; Crooks, J (Rutherford) ; Cussans, D (Bristol U.) ; Dauncey, P (Imperial Coll., London) ; Gao, R (Oxford U.) ; Goldstein, J (Bristol U.) ; Head, R (Bristol U.) ; Nash, S (Bristol U.) ; Nomerotski, A (Oxford U.) et al.
The TeraPixel Active Calorimeter (TPAC) sensor is a novel Monolithic Active Pixel Sensors (MAPS) device developed for use as the active layers of a large area, digital electromagnetic calorimeter (DECAL) at a future e(+)e(-') collider. Further applications, which include the tracking and vertex systems for future lepton colliders and LHC upgrades have been proposed and it is therefore essential to characterise the behaviour of the sensor for these applications. [...]
2013 - Published in : JINST 8 (2013) P01007 IOP Open Access article: PDF;
2.
A Monolithic Active Pixel Sensor for a “Tera-Pixel” ECAL at the ILC / Crooks, J (Rutherford)
The leading proposed technology for electromagnetic calorimeters for ILC detectors is a highly granular silicontungsten calorimeter. We have developed an active pixel sensor for such a calorimeter, which would have extremely fine granularity, allowing binary pixel readout. [...]
CERN, 2008 Published version from CERN: PDF;
In : Topical Workshop on Electronics for Particle Physics, Naxos, Greece, 15 - 19 Sep 2008, pp.63-69 (CERN-2008-008)
3.
A MAPS based readout for Tera : Pixel electromagnetic calorimeter at the ILC / Villani, E G (STFC, Rutherford Appleton Lab.) ; Weber, M (STFC, Rutherford Appleton Lab.) ; Tyndel, Mike (STFC, Rutherford Appleton Lab.) ; Apsimon, Robert (STFC, Rutherford Appleton Lab.)
A Monolithic Active Pixel Sensors (MAPS) based - option for the ILC ECAL will be presented. This novel design provides extremely fine granularity with integrated binary readout. [...]
CERN, 2007 Published version from CERN: PDF;
In : Topical Workshop on Electronics for Particle Physics, Prague, Czech Republic, 03 - 07 Sep 2007, pp.110-114 (CERN-2007-007)
4.
Advanced pixel architectures for scientific image sensors / Coath, R (Rutherford) ; Crooks, J (Rutherford) ; Godbeer, A (Rutherford) ; Wilson, M (Rutherford) ; Turchetta, R (Rutherford) /SPiDeR Collaboration
We present recent developments from two projects targeting advanced pixel architectures for scientific applications. Results are reported from FORTIS, a sensor demonstrating variants on a 4T pixel architecture. [...]
CERN, 2009 Published version from CERN: PDF;
In : Topical Workshop on Electronics for Particle Physics, Paris, France, 21 - 25 Sep 2009, pp.57-61 (CERN-2009-006)
5.
Studies On Monolithic Active Pixel Sensors and Detector Performance for the Inner Tracking System Upgrade of ALICE / Siddhanta, Sabyasachi
CERN-THESIS-2014-194 -

Full text
6.
Capacitively coupled active pixel sensors with analog readout for future $e^{+}e^{-}$ colliders / Kucewicz, W ; Deptuch, G ; Zalewska-Bak, A ; Battaglia, Marco ; Österberg, K ; Orava, Risto ; Caccia, M ; Meroni, C ; Vegni, G ; Grabiec, P et al.
1999 - Published in : Acta Phys. Pol. B 30 (1999) 2075-83
7.
Characterization of the DECAL sensor - a CMOS MAPS prototype for digital electromagnetic calorimetry and tracking / Fasselt, Lucian Raphael
The DECAL sensor is a fully depleted monolithic active pixel sensor (DMAPS) prototype for digital electromagnetic calorimetry and tracking [...]
CERN-THESIS-2022-326 - 78 p.

8.
Pixel sensors for ATLAS / Seidel, S /ATLAS Collaboration
FERMILAB-CONF-98-196-I.- Batavia, IL : FERMILAB, 1998
In : International Pixel Detector Workshop - Pixel '98, Batavia, IL, USA, 7 - 9 May 1998, pp.263-293
9.
A 1$\mu$W Radiation-Hard Front-End in a 0.18-$\mu$m CMOS Process for the MALTA2 Monolithic Sensor / Piro, F (CERN ; Ecole Polytechnique, Lausanne) ; Allport, P (Birmingham U.) ; Asensi, I (CERN) ; Berdalovic, I (CERN ; U. Zagreb (main)) ; Bortoletto, D (Oxford U.) ; Buttar, C (Glasgow U.) ; Cardella, R (CERN ; U. Geneva (main)) ; Charbon, E (Montreal, Ecole Polytechnique) ; Dachs, F (CERN) ; Dao, V (CERN) et al.
In this article, a low-power, radiation-hard front-end circuit for monolithic pixel sensors, designed to meet the requirements of low noise and low pixel-to-pixel variability, the key features to achieve high detection efficiencies, is presented. The sensor features a small collection electrode to achieve a small capacitance (<5 fF) and allows full CMOS in-pixel circuitry. [...]
2022 - 11 p. - Published in : IEEE Trans. Nucl. Sci.
- Published in : (2022) Fulltext: PDF;
10.
The level-1 calorimeter trigger system for ATLAS / Brawn, I P (Birmingham U.) ; Carney, R E (Birmingham U.) ; Garvey, J (Birmingham U.) ; Rees, D (Birmingham U.) ; Staley, R J (Birmingham U.) ; Watkins, P M (Birmingham U.) ; Watson, AT (Birmingham U.) ; Ellis, Nick (CERN) ; Geweniger, C (U. Heidelberg (main)) ; Hanke, P (U. Heidelberg (main)) et al.
We describe the design of a digital calorimeter trigger processor system which could form a major part of the ATLAS level-1 trigger system. [...]
ATL-DAQ-95-030 ; RD-27 Note 34 ; ATL-D-PN-30.
- 1995. - 51.
Access to fulltext document - Access to fulltext document - RD27 Note 34

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