BeS 分子低洼电子态光谱和过渡特性的理论研究

IF 1.1 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
Shan Sun, Yufeng Gao, Zunlue Zhu
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The potential energy curves of X<sup>1</sup>Σ<sup>+</sup>, A<sup>1</sup>Π, B<sup>1</sup>Σ<sup>+</sup>, C<sup>1</sup>Δ, D<sup>1</sup>Σ<sup>-</sup>, E<sup>1</sup>Δ, a<sup>3</sup>Π, b<sup>3</sup>Σ<sup>+</sup>, c<sup>3</sup>Δ, d<sup>3</sup>Σ<sup>-</sup>, and e<sup>3</sup>Σ<sup>-</sup> states of the BeS molecule with their Ω states and the transition dipole moments between them were calculated by the complete active space self-consistent field (CASSCF) method, followed by the internally contracted multireference configuration interaction (icMRCI) method. For the accurate computation of the transition properties, scalar relativistic corrections and core-valence correlation were considered. 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引用次数: 0

摘要

关于 BeS 的 X1Σ+、A1Π、B1Σ+、C1Δ、D1Σ-、E1Δ、a3Π、b3Σ+ 和 c3Δ 态的跃迁性质,目前发表的理论成果很有限,甚至有些态的相关跃迁方面的理论和实验报告都没有。因此,我们在本研究中推导了这些跃迁性质。X1Σ+, A1Π, B1Σ+, C1Δ, D1Σ-, E1Δ, a3Π, b3Σ+, c3Δ, d3Σ-、和 e3Σ- 态,以及它们之间的过渡偶极矩、然后采用内部收缩多参量构型相互作用(icMRCI)方法进行计算。为了精确计算过渡特性,考虑了标量相对论修正和核价相关性。A1Π 和 b3Σ+ 状态的辐射寿命约为 10-6 秒,E1Δ 状态为 10-7 秒,C1Δ 和 D1Σ- 状态为 10-7 - 10-8 秒,B1Σ+、c3Δ 和 e3Σ- 状态为 10-8 秒。研究了由 X1Σ+、A1Π、B1Σ+ 和 a3Π 电子态产生的七个 Ω 态的转变特性,包括一些电偶极子禁止的转变。其中,B1Σ+0+ - X1Σ+0+、B1Σ+0+ - A1Π1和A1Π1 - X1Σ+0+系统具有强跃迁。本文还计算了 A1Π1、B1Σ+0+、a3Π0-、a3Π0+ 和 a3Π1 电子态的辐射寿命。对于 A1Π1、B1Σ+0+ 和 a3Π1 态,在 0 ≤ υ ≤ 15 和 J ≤ 70 条件下,评估了辐射寿命与旋转角动量量子数 J 的分布。希望本文的计算结果能为进一步的理论和实验研究提供一些有意义的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical study of low-lying electronic states spectra and transition properties of BeS molecule
There are only limited theoretical results published on the transition properties of the X1Σ+, A1Π, B1Σ+, C1Δ, D1Σ-, E1Δ, a3Π, b3Σ+, and c3Δ states of BeS, and even some of the states have no theoretical and experimental reports on the relevant aspects of these transitions. As a consequence, we derived these transition properties in this study. The potential energy curves of X1Σ+, A1Π, B1Σ+, C1Δ, D1Σ-, E1Δ, a3Π, b3Σ+, c3Δ, d3Σ-, and e3Σ- states of the BeS molecule with their Ω states and the transition dipole moments between them were calculated by the complete active space self-consistent field (CASSCF) method, followed by the internally contracted multireference configuration interaction (icMRCI) method. For the accurate computation of the transition properties, scalar relativistic corrections and core-valence correlation were considered. The radiative lifetimes were approximately 10-6 s for the A1Π and b3Σ+ states, 10-7 s for the E1Δ state, 10-7 – 10-8 s for the C1Δ and D1Σ- states, and 10-8 s for the B1Σ+, c3Δ, and e3Σ- states. the transition properties of the seven Ω states generated by the X1Σ+, A1Π, B1Σ+, and a3Π electronic states including a number of electric dipole-forbidden transitions were researched. In particular, B1Σ+0+ – X1Σ+0+, B1Σ+0+ – A1Π1, and A1Π1 – X1Σ+0+ systems have strong transitions. In this paper, the radiative lifetimes of A1Π1, B1Σ+0+, a3Π0-, a3Π0+, and a3Π1 electronic states were also computed. For the A1Π1, B1Σ+0+, and a3Π1 states, the distribution of the radiation lifetime with the rotational angular momentum quantum number J at 0 ≤ υ ≤ 15 and J ≤ 70 was evaluated. It is expected that the outcome of the calculations in this paper can contribute some meaningful guidelines for conducting further theoretical and experimental investigations.
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来源期刊
Canadian Journal of Physics
Canadian Journal of Physics 物理-物理:综合
CiteScore
2.30
自引率
8.30%
发文量
65
审稿时长
1.7 months
期刊介绍: The Canadian Journal of Physics publishes research articles, rapid communications, and review articles that report significant advances in research in physics, including atomic and molecular physics; condensed matter; elementary particles and fields; nuclear physics; gases, fluid dynamics, and plasmas; electromagnetism and optics; mathematical physics; interdisciplinary, classical, and applied physics; relativity and cosmology; physics education research; statistical mechanics and thermodynamics; quantum physics and quantum computing; gravitation and string theory; biophysics; aeronomy and space physics; and astrophysics.
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