Frozen natural spinors for Cholesky decomposition based two-component relativistic coupled cluster method

Fuente: arXiv
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Autores principales: Chamoli, Somesh, Wang, Xubo, Zhang, Chaoqun, Nayak, Malaya K., Dutta, Achintya Kumar
Formato: Preprint
Publicado: 2024
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author Chamoli, Somesh
Wang, Xubo
Zhang, Chaoqun
Nayak, Malaya K.
Dutta, Achintya Kumar
author_facet Chamoli, Somesh
Wang, Xubo
Zhang, Chaoqun
Nayak, Malaya K.
Dutta, Achintya Kumar
contents We present an efficient and cost-effective implementation for the exact two-component atomic mean field (X2CAMF) based coupled cluster (CC) method, which integrates frozen natural spinors (FNS) and the Cholesky decomposition (CD) technique. The use of CD approximation greatly reduces the storage requirement of the calculation without any significant reduction in accuracy. Compared to four-component methods, the FNS and CD-based X2CAMF-CC approach gives similar accuracy as that of the canonical four-component relativistic coupled cluster method at a fraction of the cost. The efficiency of the method is demonstrated by the calculation of a medium-sized uranium complex involving the correlation of over 1000 virtual spinors.
format Preprint
id arxiv_https___arxiv_org_abs_2412_18395
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Frozen natural spinors for Cholesky decomposition based two-component relativistic coupled cluster method
Chamoli, Somesh
Wang, Xubo
Zhang, Chaoqun
Nayak, Malaya K.
Dutta, Achintya Kumar
Chemical Physics
We present an efficient and cost-effective implementation for the exact two-component atomic mean field (X2CAMF) based coupled cluster (CC) method, which integrates frozen natural spinors (FNS) and the Cholesky decomposition (CD) technique. The use of CD approximation greatly reduces the storage requirement of the calculation without any significant reduction in accuracy. Compared to four-component methods, the FNS and CD-based X2CAMF-CC approach gives similar accuracy as that of the canonical four-component relativistic coupled cluster method at a fraction of the cost. The efficiency of the method is demonstrated by the calculation of a medium-sized uranium complex involving the correlation of over 1000 virtual spinors.
title Frozen natural spinors for Cholesky decomposition based two-component relativistic coupled cluster method
topic Chemical Physics
url https://arxiv.org/abs/2412.18395