arXiv · 1905.05510
Direct decay-energy measurement as a route to the neutrino mass
Abstract
A high-precision measurement of the $^{131}$Cs$ \rightarrow ^{131}$Xe ground-to-ground-state electron-capture $Q_{\textrm{EC}}$-value was performed using the ISOLTRAP mass spectrometer at ISOLDE/CERN. The novel PI-ICR technique allowed to reach a relative mass precision $δm/m$ of $1.4\cdot10^{-9}$. A mass resolving power $m/Δm$ exceeding $1\cdot10^7$ was obtained in only $1\,$s trapping time. Allowed electron-capture transitions with sub-keV or lower decay energies are of high interest for the direct determination of the $ν_e$ mass. The new measurement improves the uncertainty on the ground-to-ground-state $Q_{\textrm{EC}}$-value by a factor 25 precluding the $^{131}$Cs$ \rightarrow ^{131}$Xe pair as a feasible candidate for the direct determination of the $ν_e$ mass.
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Jonas Karthein, Dinko Atanasov, Klaus Blaum, Sergey Eliseev, Pavel Filianin, David Lunney, Vladimir Manea, Maxime Mougeot, Dennis Neidherr, Yuri Novikov, Lutz Schweikhard, Andree Welker, Frank Wienholtz, Kai Zuber. 2019-05-14. Direct decay-energy measurement as a route to the neutrino mass. https://doi.org/10.1007/s10751-019-1601-z
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