In this work we explore readout architectures for the simultaneous high-resolution timing and bidimensional tracking of charged particles with Resistive Plate Chambers (TOF-tracker) and for the accurate detection of gamma rays for PET imaging. On 625 cm2 of active area we obtained a time resolution of 61 ps σ and bidimensional position resolution below 150 μm σ for the tracking and timing of charged particles from cosmic rays. An intrinsic precision of 0.49 mm FWHM was determined for the localization of a small β+ source via the detection of its annihilation radiation.
@article{arxiv.2501.07768,
title = {Resistive Plate Chambers for brain PET imaging and particle tracking and timing (TOF-tracker)},
author = {Paulo Fonte and Luís Lopes and Filomena M. C. Clemêncio and Miguel Couceiro and Susete Fetal and Custódio F. M. Loureiro and Jan Michel and João Saraiva and Michael Traxler and Antero Abrunhosa and Alberto Blanco and Miguel Castelo-Branco},
journal= {arXiv preprint arXiv:2501.07768},
year = {2025}
}
Comments
Presented at the 5th Jagiellonian Symposium on Advances in Particle Physics and Medicine (JS:2024), June 29 - July 7, 2024, Krak\'ow, Poland