English

MiX: A Position Sensitive Dual-Phase Liquid Xenon Detector

Instrumentation and Detectors 2016-08-25 v2

Abstract

The need for precise characterization of dual-phase xenon detectors has grown as the technology has matured into a state of high efficacy for rare event searches. The Michigan Xenon detector was constructed to study the microphysics of particle interactions in liquid xenon across a large energy range in an effort to probe aspects of radiation detection in liquid xenon. We report the design and performance of a small 3D position sensitive dual-phase liquid xenon time projection chamber with high light yield (Ly122=15.2L_y^{122}=15.2 pe/keV at zero field), long electron lifetime (τ>200μ\tau > 200 \mus), and excellent energy resolution (σ/E=1%\sigma/E = 1\% for 1,333 keV gamma rays in a drift field of 200 V/cm). Liquid xenon time projection chambers with such high energy resolution may find applications not only in dark matter direct detection searches, but also in neutrinoless double beta decay experiments and other applications.

Keywords

Cite

@article{arxiv.1507.01310,
  title  = {MiX: A Position Sensitive Dual-Phase Liquid Xenon Detector},
  author = {S. Stephenson and J. Haefner and Q. Lin and K. Ni and K. Pushkin and R. Raymond and M. Schubnell and N. Shutty and G. Tarlé and C. Weaverdyck and W. Lorenzon},
  journal= {arXiv preprint arXiv:1507.01310},
  year   = {2016}
}

Comments

18 pages, 13 figures, and 2 tables

R2 v1 2026-06-22T10:06:07.310Z