Galindo-Uribarri Alfredo, Liu Yuan, Romero Romero Elisa, Stracener Daniel W
Physics Division, Oak Ridge National Laboratory, Oak Ridge, TN, 37831, USA.
Department of Physics and Astronomy, University of Tennessee, Knoxville, TN, 37996, USA.
Sci Rep. 2021 Dec 6;11(1):23432. doi: 10.1038/s41598-021-01886-z.
Three-step resonance photoionization spectra of plutonium have been studied with Ti:Sapphire lasers for the development of efficient laser ionization schemes for ultra-trace analysis of Pu isotopes by resonance ionization mass spectrometry. We observed eighteen intermediate excited states of even parity in the energy range 35568-36701 [Formula: see text], thirteen of them have not been previously documented, and a larger number of high-lying excited states and autoionizing states of odd-parity between 48238 and 49510 [Formula: see text]. Three-color, three-photon ionization schemes via six intermediate states were evaluated under similar ion source operating conditions. This led to a highly efficient three-step scheme with an overall ionization efficiency of [Formula: see text], which is an order of magnitude improvement over the previously reported ionization efficiency for Pu.
为了开发用于通过共振电离质谱法对钚同位素进行超痕量分析的高效激光电离方案,利用钛宝石激光器研究了钚的三步共振光电离光谱。我们观察到在35568 - 36701 [公式:见正文] 能量范围内有18个偶宇称的中间激发态,其中13个此前未被记录,并且在48238和49510 [公式:见正文] 之间有大量奇宇称的高激发态和自电离态。在相似的离子源操作条件下评估了经由六个中间态的三色三光子电离方案。这产生了一种高效的三步方案,其总体电离效率为 [公式:见正文],比之前报道的钚电离效率提高了一个数量级。