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MF(M = Be、Mg和Ca)离子/共价电子态的多参考研究。

Multireference study of ionic/covalent electronic states of MF (M = Be, Mg and Ca).

作者信息

Fernandes Gabriel F S, Pontes Marcelo A P, Faria Ulisses J, Machado Francisco B C, Ferrão Luiz F A

机构信息

Instituto Tecnológico de Aeronáutica, São José dos Campos, SP 12228-900, Brazil.

Instituto Tecnológico de Aeronáutica, São José dos Campos, SP 12228-900, Brazil.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2020 Jun 5;233:118210. doi: 10.1016/j.saa.2020.118210. Epub 2020 Mar 2.

Abstract

Ultracold environments composed by atoms or molecules offer an opportunity to study chemical reactions at the quantum-state level, for simulation of solid-state systems, as qubits in quantum computing, and for test fundamental symmetries. Those ultracold conditions formed by molecules can be obtained from cryogenic buffer gas, via supersonic expansion, followed by deceleration or from the laser cooling process. Diatomic alkaline earth monofluoride molecules have been shown as great candidates for the laser cooling process. In this sense, the present work focuses on the characterization of the low-lying doublet electronic states correlated to the first dissociation channel of the alkaline earth monofluorides diatomic molecules MF (M = Be, Mg and Ca). The developed state-of-the-art methodology was based on a qualitative analysis of the diatomic electronic structure, employing a hypothetical potential energy curve or by a simple molecular orbital diagram combined with bond order analysis. The potential energy curves, excitation and dissociation energies, and various sets of spectroscopic parameters were calculated by the MRCI/cc-pV5Z methodology. Transition probabilities for emission and radiative lifetimes among the characterized electronic states were also calculated for the (A)Π ⟶ (X)Σ electronic transition. Comparing the spectroscopy properties, we were able to indicate the CaF molecule as the best candidate molecule for laser cooling devices among the studied molecules.

摘要

由原子或分子构成的超冷环境为在量子态水平研究化学反应、模拟固态系统、作为量子计算中的量子比特以及测试基本对称性提供了契机。分子形成的那些超冷条件可通过低温缓冲气体、经超声速膨胀后减速或通过激光冷却过程来实现。双原子碱土金属单氟化物分子已被证明是激光冷却过程的理想候选物。从这个意义上讲,本工作聚焦于与碱土金属单氟化物双原子分子MF(M = Be、Mg和Ca)的第一个解离通道相关的低能双重态电子态的表征。所开发的先进方法基于对双原子电子结构的定性分析,采用假设的势能曲线或通过结合键级分析的简单分子轨道图。势能曲线、激发能和解离能以及各种光谱参数集通过MRCI/cc-pV5Z方法计算得出。还针对(A)Π⟶(X)Σ电子跃迁计算了所表征电子态之间的发射跃迁概率和辐射寿命。通过比较光谱性质,我们能够指出在研究的分子中,CaF分子是激光冷却装置的最佳候选分子。

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