论文标题
Zn I的二阶和三阶电化的相对论正常耦合群集理论分析
Relativistic Normal Coupled-cluster Theory Analysis of Second- and Third-order Electric Polarizabilities of Zn I
论文作者
论文摘要
由于二阶偶极子和四极杆相互作用,我们提出了Zn基态的电极化的精确值,以及由于三阶偶极 - Quadrupole相互作用。通过使用正常耦合群集(NCC)方法的相对论版本,在线性响应理论框架中评估了这些数量。将计算出的偶极性极化值与可用的实验和其他理论结果进行了比较,包括使用普通耦合群集(CC)方法在有限场和期望值评估方法中获得的。我们还对CC和NCC计算中的贡献进行了逐期比较,以显示这两种方法的结果差异。此外,我们提出了其他低阶方法的结果,以了解电子相关效应在确定上述数量中的作用。在此开发和应用基于机器学习以生成原子计算的优化基础功能的方案。从偶极子极化结果的分析中,确定了计算出的四极和三阶极化值的准确性,目前尚无实验值。
We present precise values of electric polarizabilities for the ground state of Zn due to second-order dipole and quadrupole interactions, and due to third-order dipole-quadrupole interactions. These quantities are evaluated in the linear response theory framework by employing a relativistic version of the normal coupled-cluster (NCC) method. The calculated dipole polarizability value is compared with available experimental and other theoretical results including those are obtained using the ordinary coupled-cluster (CC) methods in both finite-field and expectation value evaluation approaches. We also give a term-by-term comparison of contributions from our CC and NCC calculations in order to show differences in the results from these two methods. Moreover, we present results from other lower-order methods to understand the role of electron correlation effects in the determination of the above quantities. A machine learning based scheme to generate optimized basis functions for atomic calculations is developed and applied here. From the analysis of the dipole polarizability result, accuracy of the calculated quadrupole and third-order polarizability values are ascertained, for which no experimental values are currently available.