arXiv:2604.03410·v1·Nuclear Experiment
Precise determination of electron-capture value of Sn decay related to electron neutrino mass measurements
Zhuang Ge🇫🇮 · Tommi Eronen🇫🇮 · Vasile Alin Sevestrean🇷🇴 · Ovidiu Nitescu🇷🇴 · Sabin Stoica🇷🇴 · Marlom Ramalho🇫🇮 · Jouni Suhonen🇫🇮 · Anu Kankainen🇫🇮 · Marjut Hukkanen🇫🇮 · Arthur Jaries🇫🇮 · Ari Jokinen🇫🇮 · Joel Kostensalo🇫🇮
Abstract
A high-precision measurement of the electron-capture (EC) decay value for the ground-state-to-ground-state (gs-to-gs) transition of Sn to In has been performed using the JYFLTRAP double Penning trap mass spectrometer. Employing the phase-imaging ion-cyclotron-resonance technique, the isomeric state of Sn at 77.389(19) keV was resolved, and the cyclotron frequency ratio measured between the isomer Sn and the daughter nucleus In. This yielded an isomer-to-ground-state value of 1116.64(19) keV and gs-to-gs value of 1039.25(19) keV. The atomic mass excess of Sn was determined as 88327.87(27) keV/c, in excellent agreement with the Atomic Mass Evaluation 2020 (AME2020) but with a sixfold precision improvement. Using nuclear energy-level data for In, we identified two low -value transitions of the ground state of Sn to excited states of In at 1024.280(50) keV ( keV, second forbidden non-unique) and 1029.650(50) keV ( keV, allowed). The allowed transition exhibits small energy differences ( keV, keV) from L1 and L2 shell binding energies, enhancing endpoint events. Partial half-lives and energy-release spectra were calculated using the self-consistent Dirac-Hartree-Fock-Slater (DHFS) method (including exchange, overlap, shake-up, and shake-off corrections) together with the nuclear shell model, show enhanced endpoint sensitivity for the allowed transition to the state at 1029.650 keV. Including subthreshold atomic states in the spectral function enhances the EC rate near the zero-neutrino-momentum region by a factor of five, enabling new approaches for low -value EC reactions in neutrino-mass studies.
Comments: 10 pages, 5 figures, submitted to Physical Review C