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1.
IO information-based component relevance estimation in a mixed-signal ASIC analog circuit / Weick, Julian (Darmstadt, Tech. U. ; CERN) ; Zoubir, A M (Darmstadt, Tech. U.) ; Riedler, P (CERN) ; Berlea, D V (DESY) ; Tortajada, I Asensi (CERN) ; Dobrijevic, D (Zagreb U.) ; Suligoj, Tomislav (Zagreb U.) ; Fasselt, L (DESY) ; Pernegger, H (CERN) ; Snoeys, W (CERN) et al.
With increasing demand for active sensor surface and compact modularization, monolithic active pixel sensors are gaining track in high-energy physics experiments. The analog circuits in these mixed-signal ASICs are often black boxes where the components’ function and the circuitry’s behavior can only be evaluated through simulation or educated guesses. [...]
2025 - 4 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1082 (2026) 170968 Fulltext: XML;
2.
Charge reconstruction from binary hit data on irradiated MALTA2 Czochralski sensors / Fasselt, Lucian (DESY ; Humboldt U., Berlin (main)) ; Asensi Tortajada, Ignacio (CERN) ; Behera, Prafulla (Indian Inst. Tech., Madras) ; Berlea, Dumitru Vlad (DESY ; Humboldt U., Berlin (main)) ; Bortoletto, Daniela (Oxford U.) ; Buttar, Craig (Glasgow U.) ; Dao, Valerio (Stony Brook U.) ; Dash, Ganapati (Indian Inst. Tech., Madras) ; Flores Sanz de Acedo, Leyre (CERN) ; Gazi, Martin (Oxford U.) et al.
MALTA2 is a depleted monolithic active pixel sensor (DMAPS) designed for tracking at high rates and is produced in the modified Tower 180nm CMOS imaging technology. The pixel pitch is 36.4µm and the sensing layer consists of either high resistivity epitaxial or Czochralski silicon. [...]
2025 - 6 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1080 (2025) 170747 Fulltext: PDF;
In : 17th Vienna Conference on Instrumentation (VCI2025), Vienna, Austria, 17 - 21 Feb 2025, pp.170747
3.
Strategic R&D Programme on Technologies for Future Experiments - Annual Report 2024 / Aglieri Rinella, Gianluca
This report summarises the activities of the CERN/EP strategic R&D programme on technologies for future experiments during the year 2024..
CERN-EP-RDET-2025-004 -

4.
Charge calibration of MALTA2, a radiation hard depleted monolithic active pixel sensor / Fasselt, Lucian (DESY, Zeuthen ; Humboldt U., Berlin (main)) ; Asensi Tortajada, Ignacio (CERN) ; Behera, Prafulla (Indian Inst. Tech., Madras) ; Berlea, Dumitru Vlad (DESY, Zeuthen ; Humboldt U., Berlin (main)) ; Bortoletto, Daniela (Oxford U.) ; Buttar, Craig (Glasgow U.) ; Dao, Valerio (Genoa U.) ; Dash, Ganapati (Indian Inst. Tech., Madras) ; de Acedo, Leyre Flores Sanz (CERN) ; Gazi, Martin (Oxford U.) et al.
MALTA2 is a depleted monolithic active pixel sensor (DMAPS) designed for tracking at high rates and typically low detection threshold of $\sim150\,\mathrm{e^-}$. A precise knowledge of the threshold is crucial to understanding the charge collection in the pixel and specifying the environment for sensor application. [...]
arXiv:2501.13562.- 2025-09-11 - 13 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1082 (2026) 170972 Fulltext: 2501.13562 - PDF; document - PDF;
5.
Annual Report 2023 and Phase-I Closeout / Aglieri Rinella, Gianluca
This report summarises the activities of the CERN strategic R&D programme on technologies for future experiments during the year 2023, and highlights the achievements of the programme during its first phase 2020-2023..
CERN-EP-RDET-2024-001 - 208.

6.
Radiation hardness of MALTA2 monolithic CMOS imaging sensors on Czochralski substrates / van Rijnbach, Milou (CERN ; Oslo U.) ; Berlea, Dumitru Vlad (DESY, Zeuthen) ; Dao, Valerio (CERN) ; Gaži, Martin (Oxford U.) ; Allport, Phil (Birmingham U.) ; Asensi Tortajada, Ignacio (CERN) ; Behera, Prafulla (Indian Inst. Tech., Madras) ; Bortoletto, Daniela (Oxford U.) ; Buttar, Craig (Glasgow U.) ; Dachs, Florian (CERN) et al.
MALTA2 is the latest full-scale prototype of the MALTA family of Depleted Monolithic Active Pixel Sensors (DMAPS) produced in Tower Semiconductor 180 nm CMOS technology. In order to comply with the requirements of High Energy Physics (HEP) experiments, various process modifications and front-end changes have been implemented to achieve low power consumption, reduce Random Telegraph Signal (RTS) noise, and optimise the charge collection geometry. [...]
arXiv:2308.13231.- 2024-03-10 - 16 p. - Published in : Eur. Phys. J. C 84 (2024) 251 Fulltext: document - PDF; 2308.13231 - PDF;
7.
Performance of the MALTA Telescope / van Rijnbach, Milou (CERN ; Oslo U.) ; Gustavino, Giuliano (CERN) ; Allport, Phil (Birmingham U.) ; Asensi, Igancio (CERN) ; Berlea, Dumitru Vlad (DESY, Zeuthen) ; Bortoletto, Daniela (Oxford U.) ; Buttar, Craig (Glasgow U.) ; Charbon, Edoardo (Ecole Polytechnique, Lausanne) ; Dachs, Florian (CERN) ; Dao, Valerio (CERN) et al.
MALTA is part of the Depleted Monolithic Active Pixel sensors designed in Tower 180nm CMOS imaging technology. A custom telescope with six MALTA planes has been developed for test beam campaigns at SPS, CERN, with the ability to host several devices under test. [...]
arXiv:2304.01104.- 2023-07-08 - 22 p. - Published in : Eur. Phys. J. C 83 (2023) 581 Fulltext: 2304.01104 - PDF; document - PDF;
8.
Annual Report 2022 / Aglieri, Gianluca
This report summarises the activities and main achievements of the CERN strategic R&D programme on technologies for future experiments during the year 2022
CERN-EP-RDET-2023-002 - 100.

9.
Extension of the R&D Programme on Technologies for Future Experiments / Joram, Christian
we have conceived an extension of the R&D programme covering the period 2024 to 2028, i.e [...]
CERN-EP-RDET-2023-001 -

10.
Recent results with radiation-tolerant TowerJazz 180 nm MALTA sensors / LeBlanc, Matt (CERN) ; Allport, Phil (Birmingham U.) ; Asensi, Igancio (CERN) ; Berlea, Dumitru-Vlad (DESY, Zeuthen) ; Bortoletto, Daniela (Oxford U.) ; Buttar, Craig (Glasgow U.) ; Dachs, Florian (CERN) ; Dao, Valerio (CERN) ; Denizli, Haluk (Abant Izzet Baysal U.) ; Dobrijevic, Dominik (CERN ; Zagreb U.) et al.
To achieve the physics goals of future colliders, it is necessary to develop novel, radiation-hard silicon sensors for their tracking detectors. We target the replacement of hybrid pixel detectors with Depleted Monolithic Active Pixel Sensors (DMAPS) that are radiation-hard, monolithic CMOS sensors. [...]
arXiv:2209.04459.- 2022-10-11 - 4 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1041 (2022) 167390 Fulltext: PDF;
In : Vienna Conference on Instrumentation (VCI 2022), Online, Austria, 21 - 25 Feb 2022, pp.167390

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