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直接测量铀桥上方的质量填补了稳定岛的空白。

Direct mass measurements above uranium bridge the gap to the island of stability.

机构信息

GSI Helmholtzzentrum für Schwerionenforschung GmbH, Planckstrasse 1, 64291 Darmstadt, Germany.

出版信息

Nature. 2010 Feb 11;463(7282):785-8. doi: 10.1038/nature08774.

Abstract

The mass of an atom incorporates all its constituents and their interactions. The difference between the mass of an atom and the sum of its building blocks (the binding energy) is a manifestation of Einstein's famous relation E = mc(2). The binding energy determines the energy available for nuclear reactions and decays (and thus the creation of elements by stellar nucleosynthesis), and holds the key to the fundamental question of how heavy the elements can be. Superheavy elements have been observed in challenging production experiments, but our present knowledge of the binding energy of these nuclides is based only on the detection of their decay products. The reconstruction from extended decay chains introduces uncertainties that render the interpretation difficult. Here we report direct mass measurements of trans-uranium nuclides. Located at the farthest tip of the actinide species on the proton number-neutron number diagram, these nuclides represent the gateway to the predicted island of stability. In particular, we have determined the mass values of (252-254)No (atomic number 102) with the Penning trap mass spectrometer SHIPTRAP. The uncertainties are of the order of 10 keV/c(2) (representing a relative precision of 0.05 p.p.m.), despite minute production rates of less than one atom per second. Our experiments advance direct mass measurements by ten atomic numbers with no loss in accuracy, and provide reliable anchor points en route to the island of stability.

摘要

原子的质量包含了它的所有组成部分及其相互作用。原子的质量与其组成部分(结合能)的总和之间的差异是爱因斯坦著名的 E = mc(2) 关系的体现。结合能决定了核反应和衰变(以及恒星核合成过程中元素的形成)可用的能量,并且是元素能有多重这一基本问题的关键。超重元素已经在具有挑战性的产生实验中被观察到,但我们目前对这些核素结合能的了解仅基于对其衰变产物的检测。从扩展的衰变链进行重建会引入不确定性,使得解释变得困难。在这里,我们报告了对铀后元素的直接质量测量。这些核素位于质子数-中子数图的锕系元素的最远端,代表了预测的稳定岛的入口。特别是,我们使用 Penning 陷阱质谱仪 SHIPTRAP 确定了 (252-254)No(原子序数 102)的质量值。尽管每个原子每秒的产生率小于一个原子,但不确定度在 10 keV/c(2) 左右(代表相对精度为 0.05 p.p.m.)。我们的实验在不降低精度的情况下将直接质量测量推进了十个原子数,为稳定岛提供了可靠的锚定点。

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