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Perturbational treatment of spin-orbit coupling for generally applicable high-level multi-reference methods

机译:适用于普遍适用的高级多参考方法的自旋-轨道耦合的微扰处理

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An efficient perturbational treatment of spin-orbit coupling within the framework of high-level multireference techniques has been implemented in the most recent version of the COLUMBUS quantum chemistry package, extending the existing fully variational two-component (2c) multi-reference configuration interaction singles and doubles (MRCISD) method. The proposed scheme follows related implementations of quasi-degenerate perturbation theory (QDPT) model space techniques. Our model space is built either from uncontracted, large-scale scalar relativistic MRCISD wavefunctions or based on the scalar-relativistic solutions of the linear-response-theory-based multi-configurational averaged quadratic coupled cluster method (LRT-MRAQCC). The latter approach allows for a consistent, approximatively size-consistent and size-extensive treatment of spin-orbit coupling. The approach is described in detail and compared to a number of related techniques. The inherent accuracy of the QDPT approach is validated by comparing cuts of the potential energy surfaces of acrolein and its S, Se, and Te analoga with the corresponding data obtained from matching fully variational spin-orbit MRCISD calculations. The conceptual availability of approximate analytic gradients with respect to geometrical displacements is an attractive feature of the 2c-QDPT-MRCISD and 2c-QDPTLRT-MRAQCC methods for structure optimization and ab inito molecular dynamics simulations.
机译:在最新版本的COLUMBUS量子化学软件包中,已在高水平多参考技术框架内对自旋轨道耦合进行了有效的微扰处理,扩展了现有的完全变异的两组分(2c)多参考配置相互作用单分子。和双打(MRCISD)方法。拟议的方案遵循准简并摄动理论(QDPT)模型空间技术的相关实现。我们的模型空间是根据未收缩的大规模标量相对论MRCISD波函数或基于线性响应理论的多配置平均二次平方聚类方法(LRT-MRAQCC)的标量相对论解决方案构建的。后一种方法允许对自旋轨道耦合进行一致的,近似的尺寸一致和尺寸扩展的处理。详细描述了该方法,并将其与许多相关技术进行了比较。通过比较丙烯醛及其S,Se和Te类似物的势能面切割与从匹配的全变自旋轨道MRCISD计算获得的相应数据,可以验证QDPT方法的固有准确性。关于几何位移的近似解析梯度的概念可用性是2c-QDPT-MRCISD和2c-QDPTLRT-MRAQCC方法的一个吸引人的特征,用于结构优化和从头开始的分子动力学模拟。

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