论文标题
AS,SE和BR核的质量测量及其对N = Z线的质子间隔相互作用强度的影响
Mass measurements of As, Se and Br nuclei and their implication on the proton-neutron interaction strength towards the N=Z line
论文作者
论文摘要
$^{69} $ as,$^{70,71} $ se和$^{71} $ br iSotopes的质量测量,通过GSI的FRS的$^{124} $ XE主束的碎片产生的质量量大规模解决能力近1,000,000。对于$^{69} $作为同位素,这是第一个直接质量测量。只有10个事件实现了22个KEV的质量不确定性。对于$^{70} $ se同位素,获得了2.6 keV的质量不确定性,对应于$δ$ m/m = 4.0 $ \ times 10^{ - 8} $的相对精度,少于500个事件。 $^{71} $ SE和$^{71} $ br同位素的质量分别以23和16 keV的不确定性测量。我们对$^{70,71} $ SE和$^{71} $ br同位素的结果与2016年原子质量评估一致,而对于$^{69} $的结果是同位素解决以前的间接测量值之间的差异。我们还测量了$^{14} $ n $^{15} $ n $^{40} $ ar(a = 69)的质量,相对精度为$δ$ m/m = 1.7 $ \ times 10^{ - 8} $,是MR-TOF-MS尚未达到的最高。我们的结果表明,对于odd-odd nuclei的质子 - 独中子相互作用($δ$ v $ _ {pn} $)的测量限制在n = z线上的奇数核上高于z = 29(最近扩展到z = 37)在n-z = 2上几乎显而易见,并且在n-z = 4时不明显。然而,$δ$ v $ _ {pn} $的详细结构沿N-Z = 2和N-Z = 4行,通过我们的质量测量确认,可能会提供一个提示,以提示正在进行的$ \ $ \ $ 500 $ 500 $ 500 $^{70} $ br ISOTOPE的质量价值约为$^$^{70} $ br ISOTOPE,包括$ a $}的范围。 0 $^+\ rightarrow $ 0 $^+$ $β$衰减。报告的工作为核图的同一区域(包括$^{70} $ br同位素)的N = Z线的FRS离子捕获器在n = Z线上的FRS离子捕获器奠定了基础。
Mass measurements of the $^{69}$As, $^{70,71}$Se and $^{71}$Br isotopes, produced via fragmentation of a $^{124}$Xe primary beam at the FRS at GSI, have been performed with the multiple-reflection time-of-flight mass spectrometer (MR-TOF-MS) of the FRS Ion Catcher with an unprecedented mass resolving power of almost 1,000,000. For the $^{69}$As isotope, this is the first direct mass measurement. A mass uncertainty of 22 keV was achieved with only 10 events. For the $^{70}$Se isotope, a mass uncertainty of 2.6 keV was obtained, corresponding to a relative accuracy of $δ$m/m = 4.0$\times 10^{-8}$, with less than 500 events. The masses of the $^{71}$Se and $^{71}$Br isotopes were measured with an uncertainty of 23 and 16 keV, respectively. Our results for the $^{70,71}$Se and $^{71}$Br isotopes agree with the 2016 Atomic Mass Evaluation, and our result for the $^{69}$As isotope resolves the discrepancy between previous indirect measurements. We measured also the mass of $^{14}$N$^{15}$N$^{40}$Ar (A=69) with a relative accuracy of $δ$m/m = 1.7$\times 10^{-8}$, the highest yet achieved with a MR-TOF-MS. Our results show that the measured restrengthening of the proton-neutron interaction ($δ$V$_{pn}$) for odd-odd nuclei at the N=Z line above Z=29 (recently extended to Z=37) is hardly evident at N-Z=2, and not evident at N-Z=4. Nevertheless, detailed structure of $δ$V$_{pn}$ along the N-Z=2 and N-Z=4 lines, confirmed by our mass measurements, may provide a hint regarding the ongoing $\approx$500 keV discrepancy in the mass value of the $^{70}$Br isotope, which prevents including it in the world average of ${Ft}$-value for superallowed 0$^+\rightarrow$ 0$^+$ $β$ decays. The reported work sets the stage for mass measurements with the FRS Ion Catcher of nuclei at and beyond the N=Z line in the same region of the nuclear chart, including the $^{70}$Br isotope.