EPJ Web of Conferences (Jan 2016)

A Wavelength-shifting Optical Module (WOM) for in-ice neutrino detectors

  • Hebecker Dustin,
  • Archinger Markus Gerhard,
  • Böser Sebastian,
  • Brostean-Kaiser Jannes,
  • Rosendo Esther Del Pino,
  • Lorenzo Vincenzo Di,
  • DuVernois Michael,
  • Falke Peter Johannes,
  • Fösig Carl-Christian,
  • Karg Timo,
  • Köpke Lutz,
  • Kowalski Marek,
  • Looft Andreas,
  • Sand Krystina,
  • Tosi Delia

DOI
https://doi.org/10.1051/epjconf/201611601006
Journal volume & issue
Vol. 116
p. 01006

Abstract

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We report on the development status of a single-photon sensor that employs wavelength-shifting and light-guiding techniques to maximize the collection area while minimizing the dark noise rate. The sensor is tailored towards application in ice-Cherenkov neutrino detectors embedded in inert and cold, low-radioactivity and UV transparent ice as a detection medium, such as IceCube-Gen2 or MICA. The goal is to decrease the energy threshold as well as to increase the energy resolution and the vetoing capability of the neutrino telescope, when compared to a setup with optical sensors similar to those used in IceCube. The proposed sensor captures photons with wavelengths between 250 nm and 400 nm. These photons are re-emitted with wavelengths above 400 nm by a wavelength shifting coating applied to a 90 mm diameter polymer tube. The tube guides the light towards a small-diameter PMT via total internal reflection. By scaling the results from smaller laboratory prototypes, the total efficiency of the proposed detector for a Cherenkov spectrum is estimated to exceed that of a standard IceCube optical module. The status of the prototype development and the performance of its main components will be discussed.