论文标题

直接确定对$^{76} $的原子质量差异为 - $^{76} $ se和$^{155} $ tb- $^{155} $ gd排除$^{76} $ as and $^{155}

Direct determination of the atomic mass difference of the pairs $^{76}$As-$^{76}$Se and $^{155}$Tb-$^{155}$Gd rules out $^{76}$As and $^{155}$Tb as possible candidates for electron (anti)neutrino mass measurements

论文作者

Ge, Z., Eronen, T., de Roubin, A., Kostensalo, J., Suhonen, J., Nesterenko, D. A., Beliuskina, O., de Groote, R., Delafosse, C., Geldhof, S., Gins, W., Hukkanen, M., Jokinen, A., Kankainen, A., Kotila, J., Koszorús, Á., Moore, I. D., Raggio, A., Rinta-Antila, S., Virtanen, V., Weaver, A. P., Zadvornaya, A.

论文摘要

The first direct determination of the ground-state-to-ground-state $Q$ values of the $β^-$ decay $^{76}$As $\rightarrow$ $^{76}$Se and the electron-capture decay $^{155}$Tb $\rightarrow$ $^{155}$Gd was performed utilizing the double Penning trap mass spectrometer JYFLTRAP.通过测量衰减对的原子质量差异,通过相像成像离子 - 循环 - cyclotron-resonance(pi-iCr)技术,$ q $值的$^{76} $作为$ \ \ rightarrow $ $ $ $ $^{76} $ se和$^$ se和$^{155} 2959.265(74)KEV和814.94(18)KEV。相对于早期测量的精度分别通过12和57的因素提高。与最新的2020年原子质量评估所采用的值相比,新的$ Q $值为1.33 keV,kev较低。与新确定的地面到地面$ q $ Q $值一起使用$γ$ ray spectrospopicy的激发能量,$ q $ ray spectrospopicy的激发能量,$ q $ q $ q $ q $ q $ q $ q $ q $ q $ q $ q $ qualtions $ q $ q $ q $ q $^$^$^$^$^$^76} $^76} $ {76} $ {76}; $^{76} $ se $^*$(2968.4(7)keV)和$^{155} $ tb(基态)$ \ rightarrow $ $ $^{155} $ gd $^*$^*$(815.731(3)keV)被得出为-9.13(70)kev和-0.79(70)kev and -0.79(18)。因此,我们已经证实,在至少4 $σ$的水平上,$β^{ - } $ - 衰减和ec-decay候选过渡都被禁止,因此绝对将这两个案例排除在搜索低点$ q $β^ - $β^ - $ ec decay的潜在候选者列表中,以确定electron-(antinime)。

The first direct determination of the ground-state-to-ground-state $Q$ values of the $β^-$ decay $^{76}$As $\rightarrow$ $^{76}$Se and the electron-capture decay $^{155}$Tb $\rightarrow$ $^{155}$Gd was performed utilizing the double Penning trap mass spectrometer JYFLTRAP. By measuring the atomic mass difference of the decay pairs via the phase-imaging ion-cyclotron-resonance (PI-ICR) technique, the $Q$ values of $^{76}$As $\rightarrow$ $^{76}$Se and $^{155}$Tb $\rightarrow$ $^{155}$Gd were determined to be 2959.265(74) keV and 814.94(18) keV, respectively. The precision was increased relative to earlier measurements by factors of 12 and 57, respectively. The new $Q$ values are 1.33 keV and 5 keV lower compared to the values adopted in the most recent Atomic Mass Evaluation 2020. With the newly determined ground-state-to-ground-state $Q$ values combined with the excitation energy from $γ$-ray spectroscopy, the $Q$ values for ground-state-to-excited-state transitions $^{76}$As (ground state) $\rightarrow$ $^{76}$Se$^*$ (2968.4(7) keV) and $^{155}$Tb (ground state) $\rightarrow$ $^{155}$Gd$^*$ (815.731(3) keV) were derived to be -9.13(70) keV and -0.79(18) keV. Thus we have confirmed that both of the $β^{-}$-decay and EC-decay candidate transitions are energetically forbidden at a level of at least 4$σ$, thus definitely excluding these two cases from the list of potential candidates for the search of low-$Q$-value $β^-$ or EC decays to determine the electron-(anti)neutrino mass.

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