The next generation of high-energy physics experiments demands dedicated R&D to meet increasingly stringent requirements. In this context, the proposed ALICE 3 experiment at the Large Hadron Collider, scheduled to start data taking in 2036 (Run 5), aims to achieve excellent particle identification capabilities, with a dedicated silicon pixel time-of-flight detector targeting a time resolution of about 20 ps. To this end, traditional LGADs with different thicknesses have been tested, demonstrating the possibility to meet the ALICE 3 requirements for thinner sensors. However, a monolithic approach would simplify production and reduce costs by integrating the sensor and readout electronics into a single substrate. In this contribution, the main results and future outlook for the development of LGAD in CMOS technology (CMOS-LGAD) are presented. The first prototypes produced within the INFN ARCADIA project, were characterized in the laboratory using a laser source to estimate the contribution of electronic jitter to the overall time resolution; this contribution is about 40 ps, but it decreases to 22 ps in a higher power consumption configuration. Initial tests with charged particle beams have demonstrated the possibility of achieving time resolutions of 75 ps and a global efficiency larger than 95%.
Preliminary results on the timing response of CMOS LGADs for the ALICE 3 experiment / Fabbri, G., Bregant, M., Bufalino, S., Buthelezi, Z., Carnesecchi, F., Cavazza, D., Colocci, M., Corradino, T., Da Rocha Rolo, M., Durando, S., Endrizzi, J., Ferrero, C., Foertsch, S., Follo, U., Gioachin, G., Goodhead, J., Grenno, M., Iizuka, H., Lim, B., Di Nicolantonio, G., et al.. - In: JOURNAL OF INSTRUMENTATION. - ISSN 1748-0221. - 21:(2026). (21st Trento Workshop on Advanced Silicon Radiation Detectors (TREDI 2026) ) [10.1088/1748-0221/21/08/c08022].
Preliminary results on the timing response of CMOS LGADs for the ALICE 3 experiment
Bufalino, S.;Durando, S.;Follo, U.;Gioachin, G.;Mandurrino, M.;Pagliarino, V.;Pancheri, L.;
2026
Abstract
The next generation of high-energy physics experiments demands dedicated R&D to meet increasingly stringent requirements. In this context, the proposed ALICE 3 experiment at the Large Hadron Collider, scheduled to start data taking in 2036 (Run 5), aims to achieve excellent particle identification capabilities, with a dedicated silicon pixel time-of-flight detector targeting a time resolution of about 20 ps. To this end, traditional LGADs with different thicknesses have been tested, demonstrating the possibility to meet the ALICE 3 requirements for thinner sensors. However, a monolithic approach would simplify production and reduce costs by integrating the sensor and readout electronics into a single substrate. In this contribution, the main results and future outlook for the development of LGAD in CMOS technology (CMOS-LGAD) are presented. The first prototypes produced within the INFN ARCADIA project, were characterized in the laboratory using a laser source to estimate the contribution of electronic jitter to the overall time resolution; this contribution is about 40 ps, but it decreases to 22 ps in a higher power consumption configuration. Initial tests with charged particle beams have demonstrated the possibility of achieving time resolutions of 75 ps and a global efficiency larger than 95%.Pubblicazioni consigliate
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https://hdl.handle.net/11583/3015867
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