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Ab initio study of ground and excited states of 6Li 40Ca and 6Li88Sr molecules

机译:从头开始研究6Li 40Ca和6Li88Sr分子的基态和激发态

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We present quantum-chemical calculations for the ground and some low-lying excited states of isolated LiCa and LiSr molecules using multi-state complete active space second-order perturbation theory (MS-CASPT2). The potential energy curves (PECs) and their corresponding spectroscopic constants, obtained at the spin-free (SF) and spin-orbit (SO) levels, agree well with available experimental values. Our SO-MS-CASPT2 calculation at the atomic limit (R = 100 a.u.) with the largest basis set reproduces experimental atomic excitation energies within 3% for both LiCa and LiSr. In addition, permanent dipole moments and transition dipole moments at the SF level are also obtained. Rovibrational calculations of the ground and selected excited states, together with the spontaneous emission rates, demonstrate that the formation of ultracold LiCa and LiSr molecules in low-lying vibrational levels of the electronic ground state may be possible.
机译:我们使用多态完全有源空间二级扰动理论(MS-CASPT2),对孤立的LiCa和LiSr分子的基态和一些低激发态进行了量子化学计算。在无自旋(SF)和自旋轨道(SO)级别获得的势能曲线(PEC)及其相应的光谱常数与可用的实验值非常吻合。我们的SO-MS-CASPT2在最大基数的原子极限(R = 100 a.u.)下进行计算,可再现LiCa和LiSr的3%以内的实验原子激发能。此外,还获得了SF级的永久偶极矩和过渡偶极矩。基态和选定激发态的自振振动计算以及自发发射速率表明,在电子基态的低振动水平上形成超冷LiCa和LiSr分子是可能的。

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