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An Assessment of Different Electronic Structure Approaches for Modeling Time-Resolved X-ray Absorption Spectroscopy

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arxiv 2101.06643 v1 pith:OTWD4HIA submitted 2021-01-17 physics.chem-ph physics.comp-ph

An Assessment of Different Electronic Structure Approaches for Modeling Time-Resolved X-ray Absorption Spectroscopy

classification physics.chem-ph physics.comp-ph
keywords differentabsorptionprotocolsx-rayapproacheselectronicmethodmodeling
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We assess the performance of different protocols for simulating excited-state X-ray absorption spectra. We consider three different protocols based on equation-of-motion coupled-cluster singles and doubles, two of them combined with the maximum overlap method. The three protocols differ in the choice of a reference configuration used to compute target states. Maximum-overlap-method time-dependent density functional theory is also considered. The performance of the different approaches is illustrated using uracil, thymine, and acetylacetone as benchmark systems. The results provide guidance for selecting an electronic structure method for modeling time-resolved X-ray absorption spectroscopy.

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