English

Avalanche gain and its effect on energy resolution in GEM-based detectors

Instrumentation and Detectors 2022-06-22 v3 High Energy Physics - Experiment

Abstract

We present avalanche gain and associated resolution measurements recorded with a 4^4He:CO2_2 (70:30) gas mixture and pure SF6_6, a Negative Ion (NI) gas. SF6_6 is of particular interest to the directional dark matter detection community, as its low thermal diffusion helps to retain recoil ionization track features over long drift lengths. With the aid of a general form of the reduced first Townsend coefficient (RFTC), multiple GEM-based detector data sets are used to study the high-gain behavior of the 4^4He:CO2_2 gas mixture. The high-gain data is well described purely in terms of the reduced electric field strength and the number of GEMs, and the robust relationship between the RFTC and the average, reduced, electric field strength across the GEMs is emphasized. The associated (pulse-height) resolution measurements are used to discuss the variance of the avalanche distribution and to describe and estimate the lower limits of energy resolution one should expect to measure using a simple relationship with the RFTC. In the end, a description of avalanche gain, its effect on energy resolution, and the contributing experimental parameters in GEM-based detectors is developed over a broad parameter space for further use.

Keywords

Cite

@article{arxiv.2106.15568,
  title  = {Avalanche gain and its effect on energy resolution in GEM-based detectors},
  author = {T. N. Thorpe and S. E. Vahsen},
  journal= {arXiv preprint arXiv:2106.15568},
  year   = {2022}
}
R2 v1 2026-06-24T03:43:46.989Z