English

Environment-friendly gas mixtures for Resistive Plate Chambers: an experimental and simulation study

Instrumentation and Detectors 2020-05-05 v1

Abstract

Resistive Plate Chambers (RPC) have shown stable operation at the Large Hadron Collider and satisfactory efficiency for the entire Run 1 (2010-2013) and Run 2 (2015-2018) with C2_{2}H2_{2}F4_{4}-based gas mixtures and the addition of SF6_{6} and i-C4_{4}H10_{10}. Since its global warming potential (GWP) is high, C2_{2}H2_{2}F4_{4} is phasing out of production due to recent European Union regulations and as a result its cost is progressively increasing. Therefore, finding a new RPC gas mixture with a low GWP has become extremely important. This contribution describes the simulation of the RPC efficiency with tetrafluoropropene C3_{3}H2_{2}F4_{4} (HFO1234ze), a hydrofluoroolefin with very low GWP. Simulation results are systematically compared with measurements of RPC efficiency in C3_{3}H2_{2}F4_{4}-based gas mixtures with the addition of different combinations of Ar, He, CO2_{2}, O2_{2} and i-C4_{4}H10_{10} in various concentrations. This simulation allows the study of the interplay between C3_{3}H2_{2}F4_{4} and the other gas components in the mixture as well as may allow the identification of the most promising environment-friendly gas mixtures with C3_{3}H2_{2}F4_{4} for RPCs.

Keywords

Cite

@article{arxiv.2005.01476,
  title  = {Environment-friendly gas mixtures for Resistive Plate Chambers: an experimental and simulation study},
  author = {A. Bianchi and S. Delsanto and P. Dupieux and A. Ferretti and M. Gagliardi and B. Joly and S. P. Manen and M. Marchisone and L. Micheletti and L. Quaglia and A. Rosano and L. Terlizzi and E. Vercellin},
  journal= {arXiv preprint arXiv:2005.01476},
  year   = {2020}
}

Comments

15th Workshop on Resistive Plate Chambers and Related Detectors (RPC 2020)

R2 v1 2026-06-23T15:17:31.932Z