Abstract
The neutrino mass experiment KATRIN uses conversion electrons from the 32.2-keV transition of the nuclear isomer 83 mKr for calibration. Comparing the measured energies to the appropriate literature values allows for an independent evaluation of the energy scale, but the uncertainties in some of the literature values obtained by gamma spectroscopy are a limiting factor. Building upon the already excellent linearity of KATRIN’s energy scale, this paper proposes a novel method for determining the 83 mKr transition energies via high-precision electron spectroscopy. Notably, the method makes use of conversion electrons from the 41.6-keV direct transition of 83 mKr to its ground state in addition to conversion electrons from the much more frequent cascade of a 32.2-keV and a 9.4-keV transition. By implementing this method, KATRIN may be able to deliver order-of-magnitude improvements in precision over current 83 mKr transition energy literature values. Although concretely described here in the context of the KATRIN experiment and with 83 mKr, the method’s underlying principles are general enough for it to likely be a useful tool in various other nuclear spectroscopy settings.
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CITATION STYLE
Rodenbeck, C. (2022). A method for determining the transition energies of 83 m Kr at the KATRIN experiment. European Physical Journal C, 82(8). https://doi.org/10.1140/epjc/s10052-022-10667-5
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