English

Detector Development for a Sterile Neutrino Search with the KATRIN Experiment

Instrumentation and Detectors 2018-01-26 v1

Abstract

The KATRIN (Karlsruhe Tritium Neutrino) experiment investigates the energetic endpoint of the tritium β\beta-decay spectrum to determine the effective mass of the electron anti-neutrino with a precision of 200meV200\,\mathrm{meV} (90%90\,\% C.L.) after an effective data taking time of three years. The TRISTAN (tritium β\beta-decay to search for sterile neutrinos) group aims to detect a sterile neutrino signature by measuring the entire tritium β\beta-decay spectrum with an upgraded KATRIN system. One of the greatest challenges is to handle the high signal rates generated by the strong activity of the KATRIN tritium source. Therefore, a novel multi-pixel silicon drift detector is being designed, which is able to handle rates up to 108cps10^{8}\,\mathrm{cps} with an excellent energy resolution of <200eV<200\,\mathrm{eV} (FWHM) at 10keV10\,\mathrm{keV}. This work gives an overview of the ongoing detector development and test results of the first seven pixel prototype detectors.

Keywords

Cite

@article{arxiv.1801.08182,
  title  = {Detector Development for a Sterile Neutrino Search with the KATRIN Experiment},
  author = {Tim Brunst and Konrad Altenmüller and Tobias Bode and Luca Bombelli and Vasiliy Chernov and Anton Huber and Marc Korzeczek and Thierry Lasserre and Peter Lechner and Susanne Mertens and Aleksander Nozik and Vladislav Pantuev and Daniel Siegmann and Aino Skasyrskaya},
  journal= {arXiv preprint arXiv:1801.08182},
  year   = {2018}
}

Comments

5 pages, 6 figures, Proceedings of the 7th International Pontecorvo Neutrino Physics School