Author:
Marsteller Alexander,Böttcher Matthias,Bornschein Beate,Enomoto Sanshiro,Fengler Caroline,Lebeda Ondřej,Machatschek Moritz,Priester Florian,Ráliš Jan,Röllig Marco,Röttele Carsten,Schlösser Magnus,Michal Šefčík,Sturm Michael,Vénos Drahoslav
Abstract
Abstract
The KArlsruhe TRItium Neutrino (KATRIN) experiment aims to search for the effective electron antineutrino mass with a sensitivity of 0.2 eV (90 % C.L.).
In order to achieve this goal, KATRIN measurement phases focusing on the neutrino mass search are alternated with phases of investigations of systematic effects.
During these phases, metastable 83mKr is used as a calibration source.
The monoenergetic conversion electrons emitted accompanying the decay of 83mKr allow a direct access to the starting conditions of β-electrons produced inside the windowless gaseous tritium source (WGTS) of KATRIN.
To make use of 83mKr in the WGTS, the Tritium Loop System, which provides a stable flow of tritium to the WGTS, needs to be operated in special modes.
This paper focuses on the technical implementation of these modes and their performance with regard to the achievable 83mKr-rates, gas densities, and gas compositions inside the WGTS.
Subject
Mathematical Physics,Instrumentation
Cited by
1 articles.
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1. KATRIN: status and prospects for the neutrino mass and beyond;Journal of Physics G: Nuclear and Particle Physics;2022-09-08