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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Extensive and accurate energy levels, transition rates, lifetimes, hyperfine structures and isotope shifts for the Rb XXXVI spectrum of plasma interest
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Extensive and accurate energy levels, transition rates, lifetimes, hyperfine structures and isotope shifts for the Rb XXXVI spectrum of plasma interest

机译:广泛和准确的能量水平,过渡率,寿命,高血清结构和同位素转换等离子体兴趣的RB XXXVI谱

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We present relativistic multiconfiguration Dirac-Hartree-Fock (MCDHF) spectrum calculations for Rb XXXVI with correlations within the n = 8 complex. An extensive and accurate set of energy levels, wavelengths, line strengths, weighted oscillator strengths, lifetimes, isotope shifts, hyperfine structure and Lande g(J) factors has been calculated for lower 127 odd- and even-parity states arising from the 1s(2) and 1snl(n = 1 - 8, 0 <= l <= n - 1) configurations in He-like-Rb. Transition rates for electric-multipole (dipole (E1), quadrupole (E2), and octupole (E3)) and magnetic-multipole (dipole (M1), quadrupole (M2), and octupole (M3)) have been also calculated. For the accuracy of our results, we have implemented parallel calculations using a Flexible Atomic Code (FAC) by introducing the Second-Order Many-Body Perturbation Theory (MBPT) method. Additionally, Breit interaction and leading quantum electrodynamic effects (QED) have been included as perturbations in extensive relativistic configuration interaction (RCI) calculations. The results arising in the two sets of calculations MCDHF and MBPT are quite close. Our results are compared with other available theory reported in the literature as well as the experimental data listed in the Atomic Spectra Database (ASD) of the National Institute of Standards and Technology (NIST) online database. Good agreement between them has been found. The present complete and consistent results can be used in line identification, plasma modeling and diagnostics of astrophysical plasma. (C) 2020 Elsevier Ltd. All rights reserved.
机译:对于RB XXXVI的相关性多功能配置Dirac-Hartree-Fock(MCDHF)频谱计算具有n = 8复合物的相关性。对于1S( 2)和1SNL(n = 1-8,0 <= l <= l <= l <= n - 1)在he-like-rb中配置。还计算了电 - 多极(偶极子(E1),四极(E2)和octupole(E3))和磁性多极(偶极子(M1),四极杆(M2)和Octupole(M3))的过渡速率。为了通过介绍二阶许多体扰动理论(MBPT)方法,我们通过柔性原子代码(FAC)来实现了并行计算。另外,已经包括在广泛的相互作用配置相互作用(RCI)计算中作为扰动作为扰动作为扰动相互作用和领先的量子电动力学效应。两组计算MCDHF和MBPT中产生的结果非常接近。我们的结果与文献中报告的其他可用理论进行比较,以及国家标准和技术研究所(NIST)在线数据库的原子谱数据库(ASD)中列出的实验数据。他们之间的良好协议已被发现。本完整且一致的结果可用于天体物理等离子体的线鉴定,等离子体建模和诊断。 (c)2020 elestvier有限公司保留所有权利。

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