High-precision measurement of a low Q value for allowed β−-decay of 131I related to neutrino mass determination
Eronen, T., Ge, Z., de Roubin, A., Ramalho, M., Kostensalo, J., Kotila, J., Beliushkina, O., Delafosse, C., Geldhof, S., Gins, W., Hukkanen, M., Jokinen, A., Kankainen, A., Moore, I.D., Nesterenko, D.A., Stryjczyk, M., & Suhonen, J. (2022). High-precision measurement of a low Q value for allowed β−-decay of 131I related to neutrino mass determination. Physics Letters B, 830, Article 137135. https://doi.org/10.1016/j.physletb.2022.137135
Published in
Physics Letters BDate
2022Discipline
ResurssiviisausyhteisöKiihdytinlaboratorioSchool of Resource WisdomAccelerator LaboratoryCopyright
© 2022 the Authors
The ground-state-to-ground-state β−-decay 131I (7/2+) → 131Xe (3/2+) Q value was determined with high precision utilizing the double Penning trap mass spectrometer JYFLTRAP at the IGISOL facility. The Q value of this β−-decay was found to be Q = 972.25(19) keV through a cyclotron frequency ratio measurement with a relative precision of 1.6 × 10−9. This was realized using the phase-imaging ion-cyclotron-resonance technique. The new Q value is more than 3 times more precise and 2.3σ higher (1.45 keV) than the value extracted from the Atomic Mass Evaluation 2020. Our measurement confirms that the β−-decay to the 9/2+ excited state at 971.22(13) keV in 131Xe is energetically allowed with a Q value of 1.03(23) keV while the decay to the 7/2+ state at 973.11(14) keV was found to be energetically
forbidden. Nuclear shell-model calculations with established two-body interactions, alongside an accurate phase-space factor and a statistical analysis of the log f t values of known allowed β decays, were used to estimate the partial half-life for the low-Q -value transition to the 9/2+ state. The half-life was found to be (1.97+2.24−0.89) ×107 years, which makes this candidate feasible for neutrino mass searches.
...
Publisher
ElsevierISSN Search the Publication Forum
0370-2693Publication in research information system
https://converis.jyu.fi/converis/portal/detail/Publication/144248277
Metadata
Show full item recordCollections
Related funder(s)
Research Council of Finland; European CommissionFunding program(s)
Academy Research Fellow, AoF; Research costs of Academy Research Fellow, AoF; Academy Project, AoF; ERC Consolidator Grant
The content of the publication reflects only the author’s view. The funder is not responsible for any use that may be made of the information it contains.
Additional information about funding
We acknowledge the support by the Academy of Finland under the Finnish Centre of Excellence Programme 2012-2017 (Nuclear and Accelerator Based Physics Research at JYFL) and projects No. 306980, 312544, 275389, 284516, 295207, 314733, 318043, 327629 and 320062. The support by the EU Horizon 2020 research and innovation program under grant No. 771036 (ERC CoG MAIDEN) is acknowledged.License
Related items
Showing items with similar title or keywords.
-
Direct high-precision measurement of the mass difference of 77As–77Se related to neutrino mass determination
Ge, Z.; Eronen, T.; Ramalho, M.; de Roubin, A.; Nesterenko D., A.; Kankainen, A.; Beliuskina, O.; de Groote, R.; Geldhof, S.; Gins, W.; Hukkanen, M.; Jokinen, A.; Koszorús, Á.; Kotila, J.; Kostensalo, J.; Moore I., D.; Pirinen, P.; Raggio, A.; Rinta-Antila, S.; Sevestrean V., A.; Suhonen, J.; Virtanen, V.; Zadvornaya, A. (Springer, 2024)The first direct determination of the ground-state-to-ground-state β−-decay Q-value of 77As to 77Se was performed by measuring their atomic mass difference utilizing the double Penning trap mass spectrometer, JYFLTRAP. The ... -
High-precision electron-capture Q value measurement of 111In for electron-neutrino mass determination
Ge, Z.; Eronen, T.; de Roubin, A.; Tyrin, K.S.; Canete, L.; Geldhof, S.; Jokinen, A.; Kankainen, A.; Kostensalo, J.; Kotila, J.; Krivoruchenko, M.I.; Moore, I.D.; Nesterenko, D.A.; Suhonen, J.; Vilén, M. (Elsevier, 2022)A precise determination of the ground state 111In (9/2+) electron capture to ground state of 111Cd (1/2+) Q value has been performed utilizing the double Penning trap mass spectrometer, JYFLTRAP. A value of 857.63(17) keV ... -
High-Precision Q-Value Measurement Confirms the Potential of 135Cs for Absolute Antineutrino Mass Scale Determination
de Roubin, A.; Kostensalo, J.; Eronen, T.; Canete, L.; de Groote, R. P.; Jokinen, A.; Kankainen, A.; Nesterenko, D. A.; Moore, I. D.; Rinta-Antila, S.; Suhonen, J.; Vilén, M (American Physical Society, 2020)The ground-state-to-ground-state β-decay Q value of 135Cs(7/2+)→135Ba(3/2+) has been directly measured for the first time. The measurement was done utilizing both the phase-imaging ion-cyclotron resonance technique and the ... -
Direct measurement of the mass difference of 72As−72Ge rules out 72As as a promising β-decay candidate to determine the neutrino mass
Ge, Z.; Eronen, T.; de Roubin, A.; Nesterenko, D. A.; Hukkanen, M.; Beliuskina, O.; de Groote, R.; Geldhof, S.; Gins, W.; Kankainen, A.; Koszorús, Á.; Kotila, J.; Kostensalo, J.; Moore, I. D.; Raggio, A.; Rinta-Antila, S.; Suhonen, J.; Virtanen, V.; Weaver, A. P.; Zadvornaya, A.; Jokinen, A. (American Physical Society (APS), 2021)We report the first direct determination of the ground-state to ground-state electron-capture Q value for the 72As to 72Ge decay by measuring their atomic mass difference utilizing the double Penning trap mass spectrometer, ... -
Observation of an ultralow-Q-value electron-capture channel decaying to 75As via a high-precision mass measurement
Ramalho, M.; Ge, Z.; Eronen, T.; Nesterenko, D. A.; Jaatinen, J.; Jokinen, A.; Kankainen, A.; Kostensalo, J.; Kotila, J.; Krivoruchenko, M. I.; Suhonen, J.; Tyrin, K. S.; Virtanen, V. (American Physical Society (APS), 2022)A precise determination of the atomic mass of 75As has been performed utilizing the double Penning trap mass spectrometer, JYFLTRAP. The mass excess is measured to be −73035.519(42)keV/c2, which is a factor of 21 more ...