论文标题
多电子高电荷离子的高金融结构分辨激光光谱法
Hyperfine-structure-resolved laser spectroscopy of many-electron highly charged ions
论文作者
论文摘要
高度电荷离子(HCI)的超细结构是探索基本物理和核特性的有利光谱靶标。 HCI原子钟的最新建议强调了它们的重要性,尤其是对于许多电子HCI,并且通过完善原子结构计算从理论上研究了它们。但是,目前尚无建立的光谱法来验证这些理论计算。在这里,我们演示了电子束离子陷阱等离子体中HCI的超细结构分辨激光光谱,在4 $ d^{9} $ 5 $ 5 $ 5 $ s $ of $^{127} $^{127} $ i $^{7+} $中采用了磁性偶极转变。定义明确的实验室等离子体中通过受控电子碰撞的离子状态操纵可以使捕获的HCI的激光诱导的荧光光谱。在低磁场下观察到的蒸发冷却离子的光谱显示出显着的特征,反映了超精细结构。目前使用组合的光学和等离子体方法的演示为多电子HCI中的高精细结构的最新原子计算提供了新的基准,并为各种未探索的实验提供了可能性。
Hyperfine-structures of highly charged ions (HCIs) are favourable spectroscopic targets for exploring fundamental physics as well as nuclear properties. Recent proposals of HCI atomic clocks highlight their importance, especially for many-electron HCIs, and they have been theoretically investigated by refining atomic-structure calculations. Nonetheless, no established spectroscopic method is currently available to verify these theoretical calculations. Here, we demonstrate hyperfine-structure-resolved laser spectroscopy of HCIs in an electron beam ion trap plasma, employing the magnetic-dipole transition in 4$d^{9}$5$s$ of $^{127}$I$^{7+}$. Ion-state manipulation by controlled electron collisions in the well-defined laboratory plasma enables laser-induced fluorescence spectroscopy of trapped HCIs. The observed spectrum of evaporatively cooled ions under the low magnetic field shows remarkable features reflecting the hyperfine-structures. The present demonstration using the combined optical and plasma approach provides a new benchmark for state-of-the-art atomic calculations of hyperfine-structures in many-electron HCIs and offers possibilities for a variety of unexploited experiments.