Fine structure transitions with spectral features in Fe V and Fe VI

IF 2.7 3区 物理与天体物理 Q2 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL
Sultana N. Nahar
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Abstract

An extensive set of E1 transitions with spectral features for Fe V obtained using relativistic Breit–Pauli R-matrix (BPRM) method is presented. The results correspond to a larger amount of atomic data and of higher accuracy in comparison to the earlier R-matrix results. We report 1,712,655 transitions among 4300 fine structure levels with j10, 2S+1= 5, 3, 1, L 10, of even and odd parities of n 10 and l9. The close coupling wavefunction expansion of Fe V includes ground and 18 excited levels of the core ion Fe VI. The theoretical spectroscopy of the fine structure levels for unique identifications was carried out using an algorithm based on quantum defect theory and angular algebra. The completeness of the calculated data sets is verified for all possible bound levels belonging to the relevant LS terms. The energies are in very good agreement with measured values within a few percent for most levels. Comparison of transition parameters and lifetimes also indicate general agreement with others. The present data processed for spectral features that show the detectability of Fe V is well within range of James Webb Space Telescope and other observatories. The present results for Fe VI, obtained from relativistic atomic structure calculations in Breit–Pauli approximation using code SUPERSTRUCTURE, include allowed E1 and forbidden E2, M1, E3, M2 transitions, 506,512 in total among 1021 energy levels, bound and continuum. Calculations show much larger number of bound levels of configurations of 3s23p53d4 than those listed at NIST compilation table. The calculations included an optimized set of 9 configurations with orbitals going up to 4f. Comparison of energies, oscillator strengths, lifetimes with available values show good agreement although some large differences are also noted. In contrast to Fe V, the spectral features of Fe VI show three regions of strong lines in the soft-xray to ultraviolet wavelengths.

Abstract Image

在Fe V和Fe VI中具有光谱特征的精细结构转变
利用相对论Breit-Pauli r -矩阵(BPRM)方法,得到了Fe V具有谱特征的广泛E1跃迁集。与早期的r矩阵结果相比,结果对应于更大量的原子数据,并且具有更高的精度。我们报道了4300个精细结构能级中j≤10,2S+1= 5, 3, 1, L≤10,偶奇对n≤10,L≤9的跃迁1,712,655次。Fe V的紧密耦合波函数展开包括核心离子Fe VI的地能级和18激发态能级。采用基于量子缺陷理论和角代数的算法进行了精细结构能级的理论光谱分析,以进行唯一识别。对于属于相关LS项的所有可能的界水平,验证了计算数据集的完整性。对于大多数能级,能量与测量值在几个百分点之内非常吻合。对过渡参数和寿命的比较也表明与其他研究结果基本一致。目前的数据处理的光谱特征表明,Fe V的可探测性是在詹姆斯韦伯太空望远镜和其他天文台的范围内。本文的结果是利用SUPERSTRUCTURE代码在Breit-Pauli近似下的相对论原子结构计算中得到的,包括允许的E1和禁止的E2、M1、E3、M2跃迁,在1021个能级、束缚能级和连续能级中总共有506,512个跃迁。计算显示3s23p53d4配置的绑定级别数量比NIST编译表中列出的要大得多。计算包括一组优化的9种构型,轨道最高为4f。能量、振子强度、寿命与可用值的比较显示出良好的一致性,尽管也注意到一些较大的差异。与Fe V相比,Fe VI的光谱特征在软x射线到紫外波段显示出三个强谱线区域。
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来源期刊
Atomic Data and Nuclear Data Tables
Atomic Data and Nuclear Data Tables 物理-物理:核物理
CiteScore
4.50
自引率
11.10%
发文量
27
审稿时长
47 days
期刊介绍: Atomic Data and Nuclear Data Tables presents compilations of experimental and theoretical information in atomic physics, nuclear physics, and closely related fields. The journal is devoted to the publication of tables and graphs of general usefulness to researchers in both basic and applied areas. Extensive ... click here for full Aims & Scope Atomic Data and Nuclear Data Tables presents compilations of experimental and theoretical information in atomic physics, nuclear physics, and closely related fields. The journal is devoted to the publication of tables and graphs of general usefulness to researchers in both basic and applied areas. Extensive and comprehensive compilations of experimental and theoretical results are featured.
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