KATRIN background due to surface radioimpurities
Abstract
The goal of the KArlsruhe TRItrium Neutrino (KATRIN) experiment is the determination of the effective electron antineutrino mass with a sensitivity of 0.2 eV/c at 90% C.L. This goal can only be achieved with a very low background level in the order of 0.01 counts per second. A possible background source is -decays on the inner surface of the KATRIN Main Spectrometer. Two -sources, Ra and Th, were installed at the KATRIN Main Spectrometer with the purpose of temporarily increasing the background in order to study -decay induced background processes. In this paper, we present a possible background generation mechanism and measurements performed with these two radioactive sources. Our results show a clear correlation between -activity on the inner spectrometer surface and background from the volume of the spectrometer. Two key characteristics of the Main Spectrometer background -the dependency on the inner electrode offset potential, and the radial distribution - could be reproduced with this artificially induced background. These findings indicate a high contribution of -decay induced events to the residual KATRIN background.
Cite
@article{arxiv.2011.05107,
title = {KATRIN background due to surface radioimpurities},
author = {F. M. Fränkle and A. Schaller and C. Weinheimer and G. Drexlin and S. Mertens and K. Blaum and E. Otten and V. Hannen and L. Bornschein and J. Wolf and K. Schlösser and F. Müller and T. Thümmler and F. Glück and A. Osipowicz and D. Hinz and F. Harms and P. Ranitzsch and N. Trost and J. Karthein and U. Köster and K. Johnston and A. Lokhov},
journal= {arXiv preprint arXiv:2011.05107},
year = {2020}
}