论文标题
总吸收$γ$ -Ray光谱$β$衰减的$^{96 \ text {gs,m}} $ y
Total absorption $γ$-ray spectroscopy of the $β$ decays of $^{96\text{gs,m}}$Y
论文作者
论文摘要
$β$衰减的基态(GS)和异构体状态(M)的$^{96} $ y已在ION指南同位素分离器在线设施中的总吸收$γ$ -RARE光谱技术进行了研究。由于Jyfltrap Double Penning Trap System的纯化功能,实现了8 $^{+} $ ISOMERIC状态与0 $^{ - } $的分离。两种衰减的$β$ - 强度分布均已独立确定。在分析中,在$^{96} $ zr中对1581.6 keV水平的脱位,其中转换电子发射与配对生产竞争,并已仔细考虑并发现对$β$ detector效率产生了重大影响,从而影响了$β$ strentightenty分布。我们的$^{96 \ text {gs}} $ y(0 $^+$)的结果确认了基态状态$β$ - 强度概率的较大基态,尽管获得了比以前的研究中所报道的稍大,总计$ 96.6 _ _ { - 2.1}}^{+0.3}^{+0.3} \%$β$ $β$β$β$β$ ligntiment。鉴于$^{96 \ text {gs}} $ y的衰减是对反应堆抗神经光谱的第二大最重要的贡献者,因此已经评估了当前结果对反应堆抗神经抗体的影响的影响。在$^{96 \ text {m}} $ y(8 $^{+} $)的衰减中,已经观察到以前未被发现的$β$强度在向6 MEV以上的状态的过渡中强度。这表明了总吸收$γ$ -Ray光谱测量$β$衰减的重要性,并具有高度分散的去激发模式。 $^{96 \ text {m}} $ y(8 $^{+} $)是裂变脉冲后10 s铀和uran-uranium燃料的反应堆衰变热量的主要因素,而新测量的$β$和$γ$ younces y ye the the Palligies y和$γ$的含量有很大差异(...
The $β$ decays of the ground state (gs) and isomeric state (m) of $^{96}$Y have been studied with the total absorption $γ$-ray spectroscopy technique at the Ion Guide Isotope Separator On-Line facility. The separation of the 8$^{+}$ isomeric state from the 0$^{-}$ ground state was achieved thanks to the purification capabilities of the JYFLTRAP double Penning trap system. The $β$-intensity distributions of both decays have been independently determined. In the analyses the de-excitation of the 1581.6 keV level in $^{96}$Zr, in which conversion electron emission competes with pair production, has been carefully considered and found to have significant impact on the $β$-detector efficiency, influencing the $β$-intensity distribution obtained. Our results for $^{96\text{gs}}$Y (0$^+$) confirm the large ground state to ground state $β$-intensity probability, although a slightly larger value than reported in previous studies was obtained, amounting to $96.6_{-2.1}^{+0.3}\%$ of the total $β$ intensity. Given that the decay of $^{96\text{gs}}$Y is the second most important contributor to the reactor antineutrino spectrum between 5 and 7 MeV, the impact of the present results on reactor antineutrino summation calculations has been evaluated. In the decay of $^{96\text{m}}$Y (8$^{+}$), previously undetected $β$ intensity in transitions to states above 6 MeV has been observed. This shows the importance of total absorption $γ$-ray spectroscopy measurements of $β$ decays with highly fragmented de-excitation patterns. $^{96\text{m}}$Y (8$^{+}$) is a major contributor to reactor decay heat in uranium-plutonium and thorium-uranium fuels around 10 s after fission pulses, and the newly measured average $β$ and $γ$ energies differ significantly from the previous values in evaluated databases (...)