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Restricted active space spin-flip configuration interaction: Theory and examples for multiple spin flips with odd numbers of electrons

机译:受限的活动空间自旋翻转结构相互作用:具有奇数个电子的多次自旋翻转的理论和示例

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The restricted active space spin flip (RAS-SF) method is extended to allow ground and excited states of molecular radicals to be described at low cost (for small numbers of spin flips). RAS-SF allows for any number of spin flips and a flexible active space while maintaining pure spin eigenfunctions for all states by maintaining a spin complete set of determinants and using spin-restricted orbitals. The implementation supports both even and odd numbers of electrons, while use of resolution of the identity integrals and a shared memory parallel implementation allow for fast computation. Examples of multiple-bond dissociation, excited states in triradicals, spin conversions in organic multi-radicals, and mixed-valence metal coordination complexes demonstrate the broad usefulness of RAS-SF.
机译:限制活动空间自旋翻转(RAS-SF)方法得到扩展,可以以低成本(对于少量自旋翻转)描述分子基的基态和激发态。 RAS-SF允许任何数量的自旋翻转和灵活的活动空间,同时通过保持自旋完整的行列式和使用自旋受限的轨道来保持所有状态的纯自旋本征函数。该实现支持偶数和奇数个电子,同时使用标识积分的分辨率和共享内存并行实现可实现快速计算。多键解离,三价基团中的激发态,有机多价基团中的自旋转换以及混合价金属配位化合物的例子证明了RAS-SF的广泛用途。

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