English

Scintillation and optical properties of xenon-doped liquid argon

Instrumentation and Detectors 2022-01-26 v1 Instrumentation and Methods for Astrophysics High Energy Physics - Experiment

Abstract

Liquid argon (LAr) is a common choice as detection medium in particle physics and rare-event searches. Challenges of LAr scintillation light detection include its short emission wavelength, long scintillation time and short attenuation length. The addition of small amounts of xenon to LAr is known to improve the scintillation and optical properties. We present a characterization campaign on xenon-doped liquid argon (XeDLAr) with target xenon concentrations ranging from 0 to 300 ppm by mass encompassing the measurement of the photoelectron yield YY , effective triplet lifetime τ3\tau_3 and effective attenuation length λatt\lambda_\mathrm{att}. The measurements were conducted in the Subterranean Cryogenic ARgon Facility, SCARF, a 1 t (XeD)LAr test stand in the shallow underground laboratory (UGL) of TU-Munich. These three scintillation and optical parameters were observed simultaneously with a single setup, the Legend Liquid Argon Monitoring Apparatus, LLAMA. The actual xenon concentrations in the liquid and gaseous phases were determined with the Impurity DEtector For Investigation of Xenon, IDEFIX, a mass spectrometer setup, and successful doping was confirmed. At the highest dopant concentration we find a doubling of YY , a tenfold reduction of τ3\tau_3 to \sim 90 ns and a tenfold increase of λatt\lambda_{att} to over 6 m.

Keywords

Cite

@article{arxiv.2112.07427,
  title  = {Scintillation and optical properties of xenon-doped liquid argon},
  author = {C. Vogl and M. Schwarz and X. Stribl and J. Grießing and P. Krause and S. Schönert},
  journal= {arXiv preprint arXiv:2112.07427},
  year   = {2022}
}