论文标题
映射$ n = 40 $倒置岛:中子富含Fe同位素的精确质量测量值
Mapping the $N = 40$ Island of Inversion: Precision Mass Measurements of Neutron-rich Fe Isotopes
论文作者
论文摘要
核素图表上的核特性是改善和验证我们对核物理中强相互作用的理解的关键。我们介绍了在泰坦设施中进行的高精度质量测量值。多次反射时间质量光谱仪(MR-TOF-MS)获得了首次实现大于600美元的解决能力,这是首次获得$^{63-70} $ Fe的测量值,包括首次高级直接测量值(包括首次高级直接测量值在$^{69} $ fe中发现长期寿命的异构体状态。这些测量结果伴随着均值和ab的从头算法,使用了最新的实现,这些实现能够理论分配$^{69} $ fe地面和异构体状态。连同Fe同位素链的四极变形参数的平均场计算,这些结果基准在Fe中的$ n = 40 $倒置岛中最大的变形,并阐明了新精确质量的质量表面所示的水平密度趋势。
Nuclear properties across the chart of nuclides are key to improving and validating our understanding of the strong interaction in nuclear physics. We present high-precision mass measurements of neutron-rich Fe isotopes performed at the TITAN facility. The multiple-reflection time-of-flight mass spectrometer (MR-ToF-MS), achieving a resolving power greater than $600\,000$ for the first time, enabled the measurement of $^{63-70}$Fe, including first-time high-precision direct measurements ($δm/m \sim 10^{-7}$) of $^{68-70}$Fe, as well as the discovery of a long-lived isomeric state in $^{69}$Fe. These measurements are accompanied by both mean-field and ab initio calculations using the most recent realizations which enable theoretical assignment of the spin-parities of the $^{69}$Fe ground and isomeric states. Together with mean-field calculations of quadrupole deformation parameters for the Fe isotope chain, these results benchmark a maximum of deformation in the $N = 40$ island of inversion in Fe, and shed light on trends in level densities indicated in the newly-refined mass surface.