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Collision Processes of Highly Charged Ions with Electrons Studied with an Electron Beam Ion Trap

机译:用电子束离子阱研究高电荷离子的碰撞过程

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The electron beam ion trap in Tokyo (Tokyo-EBIT)[1] is suitable for studying relativistic effects in the collisions of highly charged heavy ions with electrons because it can produce and trap very highly charged heavy ions which interact with a mono-energetic and unidirectional relativistic electron beam with an energy of up to 200 keV. Recently, we have been studying resonant processes in ionization[2] and recombination[3] by measuring the charge abundance inside the EBIT at the equilibrium. The abundance ratio between adjacent charge states varies slowly with the electron energy when there is no resonant process. However, when the electron energy coincides with the resonant energy at which ionization or recombination is enhanced, the abundance ratio can drastically change. Thus, the resonant processes can be studied by measuring the abundance ratio between adjacent ions as a function of electron beam energy[4]. In this talk, recent progress for heavy ions with very high charge states up to He-like Bi~(81+), is presented. For such ions, relativistic effects significantly affect the resonant processes. For example, the generalized Breit interaction (GBI) effect, which treats the retardation in the exchange of single virtual photon between the free and orbital electrons,has been clearly observed in the DR resonant strength in Li-like Bi~(80+)[5]. Recently we have also found that the GBI effect plays an important role in the interference between nonresonant and resonant recombinations. Experimental results are presented in comparison with theoretical calculations.
机译:东京(TOKYO-EBIT)[1]中的电子束离子阱适用于在带有电子的高电荷的重离子的碰撞中研究相对论的影响,因为它可以产生和捕获非常高充电的重离子,其与单能级和单能量相互作用单向相对论电子束,能量高达200 keV。最近,我们一直在研究电离[2]和重组[3]中的共振过程,通过在平衡下测量EBIN内的电荷丰度。当没有共振过程时,相邻电荷状态之间的丰度比在电子能量缓慢变化。然而,当电子能量与电离或重组的共振能量重合时,丰度比可以大大变化。因此,可以通过测量相邻离子之间的丰度比作为电子束能量的函数来研究谐振过程[4]。在这次谈判中,提出了最近的重离子的进展,非常高的指控达到他样的BI〜(81 +)。对于这些离子,相对论效果显着影响共振过程。例如,在锂样Bi〜(80 +)的博士共振强度下,清楚地观察到在自由和轨道电子之间进行单一虚拟光子交换中的延伸性的推广白细胞相互作用(GBI)效应。 5]。最近,我们还发现GBI效应在非族裔和共同重组之间的干扰中起重要作用。与理论计算相比,提出了实验结果。

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