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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Relativistic configuration interaction plus linearized-coupled-cluster calculations of U2+ energies, g factors, transition rates, and lifetimes
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Relativistic configuration interaction plus linearized-coupled-cluster calculations of U2+ energies, g factors, transition rates, and lifetimes

机译:相对论配置相互作用以及U2 +能量,g因子,过渡速率和寿命的线性化耦合簇计算

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摘要

Excitation energies, term designations, g factors, transition rates, and lifetimes of U2+ are determined using a relativistic configuration interaction (CI) + linearized-coupled-cluster (LCC) approach. The CI-LCC energies are compared with CI + many-body-perturbation-theory (MBPT) and available experimental energies. Close agreement has been found with experiment, within hundreds of cm(-1). In addition, lifetimes of higher levels have been calculated for comparison with three experimentally measured lifetimes, and close agreement has been found within the experimental error. CI-LCC calculations constitute a benchmark test of the CI + all-order method in complex relativistic systems such as actinides and their ions with many valence electrons. The theory yields many energy levels, g factors, transition rates, and lifetimes of U2+ that are not available from experiment. The theory can be applied to other multivalence atoms and ions, which would be of interest to many applications.
机译:使用相对论配置相互作用(CI)+线性耦合簇(LCC)方法确定U2 +的激发能,术语名称,g因子,跃迁速率和寿命。将CI-LCC能量与CI +多体摄动理论(MBPT)和可用的实验能量进行比较。在数百厘米(-1)的范围内,与实验发现了紧密的一致性。此外,已计算出较高寿命,以与三个实验测得的寿命进行比较,并且在实验误差范围内发现了接近的一致性。 CI-LCC计算构成了复杂相对论系统(例如act系元素及其带许多价电子的离子)中CI +全阶方法的基准测试。该理论产生了许多能量水平,g因子,跃迁速率和U2 +的寿命,这些是实验无法获得的。该理论可以应用于其他多价原子和离子,这将在许多应用中引起关注。

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