A Measurement of the Absorption of Liquid Argon Scintillation Light by Dissolved Nitrogen at the Part-Per-Million Level
arXiv:1306.4605 · doi:10.1088/1748-0221/8/07/P07011
Abstract
We report on a measurement of the absorption length of scintillation light in liquid argon due to dissolved nitrogen at the part-per-million (ppm) level. We inject controlled quantities of nitrogen into a high purity volume of liquid argon and monitor the light yield from an alpha source. The source is placed at different distances from a cryogenic photomultiplier tube assembly. By comparing the light yield from each position we extract the absorption cross section of nitrogen. We find that nitrogen absorbs argon scintillation light with strength of , corresponding to an absorption cross section of . We obtain the relationship between absorption length and nitrogen concentration over the 0 to 50 ppm range and discuss the implications for the design and data analysis of future large liquid argon time projection chamber (LArTPC) detectors. Our results indicate that for a current-generation LArTPC, where a concentration of 2 parts per million of nitrogen is expected, the attenuation length due to nitrogen will be meters.
v2: Correct mistake in molecular absorption cross section calculation, and a minor typo in fig 8
References in corpus (2)
Cited by in corpus (27)
- Design and Construction of the MicroBooNE Detector
- Search for dark matter with a 231-day exposure of liquid argon using DEAP-3600 at SNOLAB
- Gaseous and dual-phase time projection chambers for imaging rare processes
- Solar neutrino detection in a large volume double-phase liquid argon experiment
- The Photomultiplier Tube Calibration System of the MicroBooNE Experiment
- A Novel Use of Light Guides and Wavelength Shifting Plates for the Detection of Scintillation Photons in Large Liquid Argon Detectors
- Expected performance of an ideal liquid argon neutrino detector with enhanced sensitivity to scintillation light
- Two-phase Cryogenic Avalanche Detector with electroluminescence gap operated in argon doped with nitrogen
- Wavelength-Shifting Performance of Polyethylene Naphthalate Films in a Liquid Argon Environment
- The Effects of Dissolved Methane upon Liquid Argon Scintillation Light
- Large Low Background kTon-Scale Liquid Argon Time Projection Chambers
- Scintillation Light from Cosmic-Ray Muons in Liquid Argon
- Summary of the Second Workshop on Liquid Argon Time Projection Chamber Research and Development in the United States
- Dark Matter Detection Capabilities of a Large Multipurpose Liquid Argon Time Projection Chamber
- Predicting Transport Effects of Scintillation Light Signals in Large-Scale Liquid Argon Detectors
- Study of scintillation light collection, production and propagation in a 4 tonne dual-phase LArTPC
- Improved TPB-coated Light Guides for Liquid Argon TPC Light Detection Systems
- Testing of High Voltage Surge Protection Devices for Use in Liquid Argon TPC Detectors
- A 20-Liter Test Stand with Gas Purification for Liquid Argon Research
- Modeling impurity concentrations in liquid argon detectors
- TPB-coated Light Guides for Liquid Argon TPC Light Detection Systems
- Differences in the response of two light guide technologies and two readout technologies after an exchange of liquid argon in the dewar
- A Model for the Global Quantum Efficiency for a TPB-based Wavelength-Shifting System used with Photomultiplier Tubes in Liquid Argon in MicroBooNE
- Photon Detection System Designs for the Deep Underground Neutrino Experiment
- Demonstration of the light collection stability of a PEN-based wavelength shifting reflector in a tonne scale liquid argon detector
- Calibration of calorimetric measurement in a liquid argon time projection chamber
- Scintillation light detection in the 6-m drift length ProtoDUNE Dual Phase liquid argon TPC