论文标题

通过精确的笔记陷阱测量$^{75} $的精确笔陷阱测量,以$^{75} $ SE在$^{75} $ se中识别潜在的超低Q值电子捕获分支

Identification of a potential ultra-low Q value electron capture decay branch in $^{75}$Se via a precise Penning trap measurement of the mass of $^{75}$As

论文作者

Gamage, M. Horana, Bhandari, R., Bollen, G., Gamage, N. D., Hamaker, A., Puentes, D., Redshaw, M., Ringle, R., Schwarz, S., Sumithrarachchi, C. S., Yandow, I.

论文摘要

背景:低能$β$和电子捕获(EC)衰减是中微子质量确定实验的重要系统。具有超低Q值$β$ -decay的同位素在女儿中具有QES <1 KEV的激发状态,可以为将来的实验提供有希望的替代候选者。 $^{75} $ se ec和$^{75} $ ge $β$ -decay代表这样的候选人,但需要更精确地确定普通女儿的质量,$^{75} $ as需要评估其潜在的衰减分支是否能有力地允许允许和超低。目的:执行$^{75} $的精确原子质量测量,并将结果与​​精确的$^{75} $ SE和$^{75} $ ge结合起来,以及$^{75} $的核能数据,以评估潜在的Ultra-Low Q值Q $ ec $ ec $^$^$^$^$^75 $β$ -Decay的$^{75} $ ge。方法:用于稀有同位素光束的设施的Lebit Penning陷阱质谱仪用于对原子质量进行$^{75} $的高精度测量,因为通过Cyclotron频率比值测量为$^{75} $ aS $^{+} $ a $^{+} $^{$^{12} $ c $ c $ c $ c $ c} $} $ c $^{75} $结果:$^{75} $作为批量超额被确定为我($^{75} $ as)= -73 035.98(43)kev,从中,地面到地面Q值$^{75} $ se ec ec and $^{75} $^{75} $^{75} $ ge $ ge $ ge $ -decay and-decay and 84(44)(44)凯夫分别。将这些结果与$^{75} $中激发态的能量(在865.4(5)keV和1172.0(6)keV中进行比较,以确定Q值1.1(7)KeV和7.0(7)keV,用于潜在的超低EC和$β$ -decay $ -decay分支的$^$ -Decay分支$^{75} $^{75} $ se and $ se and $ se and $^ege,结论:$^{75} $ se ec ec衰减至$^{75} $中的865.4 keV激发状态,可能是QES $ \ $ 1 kev的超低。但是,根据需要,更精确地确定$^{75} $的865.4(5)keV级别。

Background: Low energy $β$ and electron capture (EC) decays are important systems in neutrino mass determination experiments. An isotope with an ultra-low Q value $β$-decay to an excited state in the daughter with Qes < 1 keV could provide a promising alternative candidate for future experiments. $^{75}$Se EC and $^{75}$Ge $β$-decay represent such candidates, but a more precise determination of the mass of the common daughter, $^{75}$As, is required to evaluate whether their potential decay branches are energetically allowed and ultra-low. Purpose: Perform a precise atomic mass measurement of $^{75}$As and combine the result with the precisely known atomic masses of $^{75}$Se and $^{75}$Ge, along with nuclear energy level data for $^{75}$As to evaluate potential ultra-low Q value decay branches in the EC decay of $^{75}$Se and the $β$-decay of $^{75}$Ge. Method: The LEBIT Penning trap mass spectrometer at the Facility for Rare Isotope Beams was used to perform a high-precision measurement of the atomic mass of $^{75}$As via cyclotron frequency ratio measurements of $^{75}$As$^{+}$ to a $^{12}$C$_{6}^{+}$ reference ion. Results: The $^{75}$As mass excess was determined to be ME($^{75}$As)= -73 035.98(43) keV, from which the ground-state to ground-state Q values for $^{75}$Se EC and $^{75}$Ge $β$-decay were determined to be 866.50(44) keV and 1179.01(44) keV, respectively. These results were compared to energies of excited states in $^{75}$As at 865.4(5) keV and 1172.0(6) keV to determine Q values of 1.1(7) keV and 7.0(7) keV for the potential ultra-low EC and $β$-decay branches of $^{75}$Se and $^{75}$Ge, respectively. Conclusion: The $^{75}$Se EC decay to the 865.4 keV excited state in $^{75}$As is potentially ultra-low with Qes $\approx$ 1 keV. However, a more precise determination of the 865.4(5) keV level in $^{75}$As is required.

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