论文标题

tao $^+$分子离子的光谱和电特性用于搜索新物理学:识别和状态控制的平台

Spectroscopic and Electric Properties of the TaO$^+$ Molecule Ion for the Search of New Physics: A Platform for Identification and State Control

论文作者

Sunaga, Ayaki, Fleig, Timo

论文摘要

tao $^+$阳离子是一种吸引人的分子物种,可以寻找平等和时间逆转的竞争相互作用,尤其是HADRONIC的起源。对于光谱检测和制备Tao $^+$ cation在所需状态的详细知识中,对激发态的光谱和电性能的详细知识是必不可少的信息。在这项工作中,我们介绍了电子接地中的tao $^+$的光谱常数,并使用相对论配置相互作用理论计算出29个激发态。平衡键长($ r_ \ mathrm {e} $),谐波振动频率($ω__\ MATHRM {E} $),过渡偶极矩(TDM),垂直激发能和静态分子偶极力矩(PDM)。我们包括所有电子状态的详细表征,从它们的纺纱店职业角度来看。这项工作支持使用TAO $^+$离子实现实验,以搜索除基本粒子标准模型之外的新物理学。

The TaO$^+$ cation is an attractive molecular species to search for parity- and time-reversal-violating interactions, in particular of hadronic origin. For the spectroscopic detection and preparation of TaO$^+$ cation in a desired state detailed knowledge of spectroscopic and electric properties in excited states is essential information. In this work we present spectroscopy constants for TaO$^+$ in the electronic ground and 29 excited states calculated with relativistic configuration interaction theory. The equilibrium bond lengths ($R_\mathrm{e}$), harmonic vibrational frequencies ($ω_\mathrm{e}$), transition dipole moments (TDM), vertical excitation energies and static molecular dipole moments (PDM) are summarized. We include a detailed characterization of all electronic states in terms of their spinor occupations. This work supports the realization of experiments using TaO$^+$ ions to search for new physics beyond the standard model of elementary particles.

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