Observation of an ultra-low $Q$-value electron-capture channel decaying to $^{75}$As via high-precision mass measurement
M. Ramalho, Z. Ge, T. Eronen, D. A. Nesterenko, J. Jaatinen, A., Jokinen, A. Kankainen, J. Kostensalo, J. Kotila, M. I. Krivoruchenko, J., Suhonen, K. S. Tyrin, and V. Virtanen

TL;DR
This study precisely measured the mass of $^{75}$As, revealing an ultra-low $Q$-value electron-capture decay channel to $^{75}$As, which is significant for neutrino mass research and advances nuclear mass measurement techniques.
Contribution
The paper provides the first direct measurement of an ultra-low $Q$-value electron-capture transition, improving mass precision and confirming a candidate channel for neutrino mass determination.
Findings
Measured $^{75}$As mass with 21-fold improved precision.
Confirmed ultra-low $Q$-value transition (<1 keV) for $^{75}$Se to $^{75}$As$^*$.
Identified a potential channel for antineutrino mass measurement.
Abstract
A precise determination of the atomic mass of As has been performed utilizing the double Penning trap mass spectrometer, JYFLTRAP. The mass excess is measured to be -73035.519(42) keV/c, which is a factor of 21 more precise and 1.3(9) keV/c lower than the adopted value in the newest Atomic Mass Evaluation (AME2020). This value has been used to determine the ground-state-to-ground-state electron-capture decay value of Se and decay value of Ge, which are derived to be 866.041(81) keV and 1178.561(65) keV, respectively. Using the nuclear energy-level data of 860.00(40) keV, 865.40(50) keV (final states of electron capture) and 1172.00(60) keV (final state of decay) for the excited states of As, we have determined the ground-state-to-excited-state values for two transitions of Se As and…
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