Beam tests of a large-scale TORCH time-of-flight demonstrator
Abstract
The TORCH time-of-flight detector is designed to provide particle identification in the momentum range 2-10 GeV/c over large areas. The detector exploits prompt Cherenkov light produced by charged particles traversing a 10 mm thick quartz plate. The photons propagate via total internal reflection and are focused onto a detector plane comprising position-sensitive Micro-Channel Plate Photo-Multiplier Tubes (MCP-PMT) detectors. The goal is to achieve a single-photon timing resolution of 70 ps, giving a timing precision of 15 ps per charged particle by combining the information from around 30 detected photons. The MCP-PMT detectors have been developed with a commercial partner (Photek Ltd, UK), leading to the delivery of a square tube of active area 53 53mm with a granularity of 8 128 pixels equivalent. A large-scale demonstrator of TORCH, having a quartz plate of dimensions 660 1250 10 mm and read out by a pair of MCP-PMTs with custom readout electronics, has been verified in a test beam campaign at the CERN PS. Preliminary results indicate that the required performance is close to being achieved. The anticipated performance of a full-scale TORCH detector at the LHCb experiment is presented.
Keywords
Cite
@article{arxiv.1904.11235,
title = {Beam tests of a large-scale TORCH time-of-flight demonstrator},
author = {Thomas H. Hancock and Srishti Bhasin and Thomas Blake and Nicholas Brook and Tom Conneely and David Cussans and Roger Forty and Christophe Frei and Emmy P. M. Gabriel and Rui Gao and Timothy Gershon and Thierry Gys and Tom T. Hadavizadeh and Neville Harnew and Michel Kreps and James Milnes and Didier Piedigrossi and Jonas Rademacker and Maarten van Dijk},
journal= {arXiv preprint arXiv:1904.11235},
year = {2019}
}
Comments
12 pages, 7 figures, Paper submitted to Nuclear Instruments & Methods in Physics Research, Section A - Special Issue VCI 2019