English

Picosecond timing of charged particles using the TORCH detector

Instrumentation and Detectors 2022-03-28 v1 High Energy Physics - Experiment

Abstract

TORCH is a large-area, high-precision time-of-flight (ToF) detector designed to provide charged-particle identification in the 2-20 GeV/c/c momentum range. Prompt Cherenkov photons emitted by charged hadrons as they traverse a 10mm quartz radiator are propagated to the periphery of the detector, where they are focused onto an array of micro-channel plate photomultiplier tubes (MCP-PMTs). The position and arrival times of the photons are used to infer the particles' time of entry in the radiator, to identify hadrons based on their ToF. The MCP-PMTs were developed with an industrial partner to satisfy the stringent requirements of the TORCH detector. The requirements include a finely segmented anode, excellent time resolution, and a long lifetime. Over an approximately 10m flight distance, the difference in ToF between a kaon and a pion with 10GeV/c/c momentum is 35ps, leading to a 10-15ps per track timing resolution requirement. On average 30 photons per hadron are detected, which translates to a single-photon time resolution of 70ps. The TORCH research and development program aims to demonstrate the validity of the detector concept through laboratory and beam tests, results from which are presented. A timing resolution of 70-100ps was reached in beam tests, approaching the TORCH design goal. Laboratory timing tests consist of operating the MCP-PMTs coupled to the TORCH readout electronics. A time resolution of about 50ps was measured, meeting the TORCH target timing resolution.

Keywords

Cite

@article{arxiv.2203.13774,
  title  = {Picosecond timing of charged particles using the TORCH detector},
  author = {Maria Flavia Cicala and Srishti Bhasin and Thomas Blake and Nick H. Brook and Thomas Conneely and David Cussans and Maarten W. U. van Dijk and Roger Forty and Christoph Frei and Emmy P. M. Gabriel and Rui Gao and Timothy Gershon and Thierry Gys and Thomas Hadavizadeh and Thomas Henry Hancock and Neville Harnew and Thomas Jones and Michal Kreps and James Milnes and Didier Piedigrossi and Jonas Rademacker and Jennifer Clare Smallwood},
  journal= {arXiv preprint arXiv:2203.13774},
  year   = {2022}
}

Comments

Vienna Instrumentation Conference 2022 proceedings. 13 pages,5 figures, 1 table

R2 v1 2026-06-24T10:26:12.970Z