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1.
Primary vertex timing reconstruction with the LHCb RICH detectors
Reference: Poster-2024-1204
Created: 2024. -1 p
Creator(s): Malentacca, Lorenzo

The LHCb RICH detector will undergo a significant upgrade during LS3 as part of an approved enhancement program to introduce fast-timing information. The upgrade will address the challenges posed by increased particle multiplicity and high occupancy anticipated for the LHC HL phase. Integrating sub-100 ps timing information is crucial for maintaining excellent particle identification (PID) performance. In the RICH detector, Cherenkov photons from a track arrive nearly simultaneously at the detector plane, allowing precise hit time prediction. Determining the primary vertex time (PV T$_0$) is key to accurately predicting the time of arrival of photons on the photodetector plane. By integrating time information in the RICH reconstruction, a software time gate can be applied around the predicted time per track to enhance signal-to-background ratio and PID performance. This contribution describes the integration of fast-timing information into the RICH detector, focusing on a novel method to estimate PV T$_0$ using only RICH information.

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2.
A novel fast-timing readout chain for LHCb RICH LS3 and prototype beam tests / Keizer, Floris (CERN) /LHCb RICH Collaboration
The prompt Cherenkov radiation and focusing optics of the LHCb RICH detectors allow the prediction of the Cherenkov photon detection time from a given charged particle to within 10ps. Fast-timing information on the detected Cherenkov photons can therefore be used to significantly improve the particle identification (PID) performance and the signal-to-background ratio of the detectors. [...]
2023 - 4 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1055 (2023) 168475
In : 11th International Workshop on Ring Imaging Cherenkov Detectors (RICH 2022), Edinburgh, United Kingdom, 12 - 16 Sep 2022
3.
Procesado digital de senales de detectores $\gamma$ de centelleo para aplicaciones de fast-timing / Martin Ortega, A
4.
Research and development of fast-timing large-area thin detector / Ushida, S
2005 Published version: PDF;
In : 29th International Cosmic Ray Conference, Pune, India, 3 - 10 Aug 2005, pp.331 (v.5)
5.
Test and optimization of the IDS fast-timing electronics / Phrompao, Jindaratsamee (speaker)
2016 - 655. Summer Student Lecture Programme General; Student Session External links: Talk details; Event details In : Student Session
6.
Commissioning of the IDS Neutron Detector and $\beta$-decay fast-timing studies at IDS / Piersa, Monika (University of Warsaw (PL))
The following report describes my scientific activities performed during the Summer Student Programme at ISOLDE. [...]
CERN-STUDENTS-Note-2016-224.
- 2016
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7.
Novel photon timing techniques applied to the LHCb RICH upgrade programme / Keizer, Floris (CERN) /LHCb RICH Collaboration
The Ring-Imaging Cherenkov (RICH) detectors at LHCb have an intrinsic time resolution of better than 10 ps owing to the prompt Cherenkov radiation and focusing mirrors optics. While only spatial information has been used in the experiment to date, the addition of photon time information is one of the cornerstones of the future RICH upgrade programme. [...]
arXiv:2210.15309.- 2022 - 4 p. - Published in : J. Phys. : Conf. Ser.: 2374 (2022) , no. 1, pp. 012074
Fulltext: document - PDF; 2210.15309 - PDF;
In : International Conference on Technology and Instrumentation in Particle Physics (TIPP 2021), Online, Canada, 24 - 29 May 2021, pp.012074
8.
γ-γ fast timing with high-performance LaBr3(Ce) scintillators / Régis, J -M (Cologne U.) ; Fraile, L M (UCM, Somosaguas ; CERN) ; Rudigier, M (Darmstadt, Tech. U.)
We present a review of the electronic γ-γ “fast-timing” technique in combination with LaBr3(Ce) scintillator detectors. The γ-γ fast-timing technique has increased in popularity since the commercial introduction of the LaBr3(Ce) scintillators in 2005. [...]
2024 - 47 p.
Fulltext: Publication - PDF; Erratum - PDF;
9.
$\gamma$ and fast-timing spectroscopy of the doubly magic $^{132}$Sn and its one- and two-neutron particle/hole neighbours - ISOLDE.
Approved: 09 December 2015.-
Status: Completed on 06 May 2020
Experiment: IS610
10.
Probing the structure of yrast states in even-even 214,216,218Po through fast-timing measurements following the a-decay of 214,216,218Bi - ISOLDE.
Approved: 06 December 2017.-
Status: Completed on 24 April 2020
Experiment: is650

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