English

The CMS Barrel Timing Layer: test beam confirmation of module timing performance

Instrumentation and Detectors 2025-08-14 v1 High Energy Physics - Experiment

Abstract

First of its kind, the barrel section of the MIP Timing Detector is a large area timing detector based on LYSO:Ce crystals and SiPMs which are required to operate in an unprecedentedly harsh radiation environment (up to an integrated fluence of 2×10142\times10^{14} 1 MeV neq/cm2n_{eq}/cm^2). It is designed as a key element of the upgrade of the existing CMS detector to provide a time resolution for minimum ionizing particles in the range between 30-60 ps throughout the entire operation at the High Luminosity LHC. A thorough optimization of its components has led to the final detector module layout which exploits 25 μm\rm \mu m cell size SiPMs and 3.75 mm thick crystals. This design achieved the target performance in a series of test beam campaigns. In this paper we present test beam results which demonstrate the desired performance of detector modules in terms of radiation tolerance, time resolution and response uniformity.

Keywords

Cite

@article{arxiv.2504.11209,
  title  = {The CMS Barrel Timing Layer: test beam confirmation of module timing performance},
  author = {F. Addesa and P. Akrap and A. Albert and B. Allmond and T. Anderson and J. Babbar and D. Baranyai and P. Barria and C. Basile and A. Benaglia and A. Benato and M. Benettoni and M. Besancon and N. Bez and S. Bhattacharya and R. Bianco and D. Blend and A. Boletti and A. Bornheim and R. Bugalho and A. Bulla and B. Cardwell and R. Carlin and M. Casarsa and F. Cetorelli and F. Cossutti and B. Cox and G. Da Molin and F. De Guio and K. De Leo and F. De Riggi and P. Debbins and D. Del Re and R. Delli Gatti and J. Dervan and P. Devouge and K. Dreimanis and O. M. Eberlins and F. Errico and E. Fernandez and W. Funk and A. Gaile and M. Gallinaro and R. Gargiulo and R. Gerosa and A. Ghezzi and B. Gyongyosi and Z. Hao and A. H. Heering and Z. Hu and R. Isocrate and M. Jose and A. Karneyeu and M. S. Kim and A. Krishna and B. Kronheim and O. K. Köseyan and A. Ledovskoy and L. Li and Z. Li and V. Lohezic and F. Lombardi and M. T. Lucchini and M. Malberti and Y. Mao and Y. Maravin and B. Marzocchi and D. Mazzaro and R. Menon Raghunandanan and P. Meridiani and C. Munoz Diaz and Y. Musienko and S. Nargelas and L. L. Narváez and C. Neu and G. Organtini and T. Orimoto and D. Osite and M. Paganoni and S. Palluotto and C. Palmer and N. Palmeri and F. Pandolfi and R. Paramatti and T. Pauletto and A. Perego and G. Pikurs and G. Pizzati and R. Plese and C. Quaranta and G. Reales Gutiérrez and N. Redaelli and S. Ronchi and R. Rossin and M. Ö. Sahin and F. Santanastasio and I. Schmidt and D. Sidiropoulos Kontos and T. Sievert and R. Silva and P. Simmerling and L. Soffi and P. Solanki and G. Sorrentino and M. Spiropulu and N. R. Strautnieks and X. Sun and D. D. Szabo and T. Tabarelli de Fatis and G. Tamulaitis and R. Taylor and M. Titov and M. Tosi and G. Trabucco and A. Tsirou and C. Tully and M. Turcato and B. Ujvari and J. Varela and F. Veronese and V. Vladimirov and J. Wang and M. Wayne and S. White and Z. Wu and J. W. Wulff and R. A. Wynne and L. Zhang and M. Zhang and G. Zilizi},
  journal= {arXiv preprint arXiv:2504.11209},
  year   = {2025}
}
R2 v1 2026-06-28T22:59:09.064Z