To meet the need for a high counting rate and high time resolution in future high-energy physics experiments, a prototype of a gas photodetector with an RPC structure was developed. Garfield++ simulated the detector's performance, and the single photoelectron performance of different mixed gases was tested with an ultraviolet laser. The detector uses a low resistivity (∼1.4⋅1010Ω⋅cm) float glass so that its rate capability is significantly higher than that of ordinary float glass(1012∼1014Ω⋅cm), the laser test results show that in MRPC gas(R134a/iC4H10/SF6(85/10/5)), the single photoelectron time resolution is best to reach 20.3 ps at a gas gain of 7⋅106. Increasing the proportion of iC4H10 can effectively reduce the probability of photon feedback, without changing the time resolution and maximum gain. In addition to being applied to high-precision time measurement scenarios (eg:T0, TOF), the detector can also quantitatively test the single photoelectron performance of different gases and will be used to find eco-friendly MRPC gases.
@article{arxiv.2407.19720,
title = {A high rate and high timing photoelectric detector prototype with RPC structure},
author = {Yiding Zhao and D. Hu and M. Shao and Y. Zhou and S. Lv and Xiangqi Tian and Anqi Wang and Xueshen Lin and Hao Pang and Y. Suna},
journal= {arXiv preprint arXiv:2407.19720},
year = {2024}
}