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20222026
most citedA low-cost four-component relativistic coupled cluster linear response theory based on perturbation sensitive natural spinors

4 citations · 9 across the 23 of their papers we have counts for

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physics.chem-ph2026

Core-excited and shape-type resonances in the micro-solvated Uracil: A CASSCF study

Sneha Arora, Achintya Kumar Dutta

Electronic resonances play an important role in electron attachment-induced processes in biomolecules, and their properties can be significantly influenced by the local molecular e…

physics.chem-ph2026

Do Water Molecules Always Stabilize Resonances? Microhydration Effects on Thymine Shape Resonances

Sujan Mandal, Jishnu Narayanan S J, Ankita Gogoi +3

We investigate microhydration effects on the three low-lying π* shape resonances of thymine using the Resonance via Padé approach in combination with the DLPNO-EA-EOM-CCSD method.…

physics.chem-ph2026

Relativistic Exact-Two-Component Core-Valence-Separated Algebraic Diagrammatic Construction Theory For Near L-edge X-ray Absorption Spectra

Somesh Chamoli, Sudipta Chakraborty, Xubo Wang +1

We present an efficient implementation of the second-order two-component relativistic core-valence-separated algebraic diagrammatic construction method (CVS-ADC(2)) for core-excita…

physics.chem-ph2026

Electron Attachment Induced Shape Resonances in AT Base Pairs

Sneha Arora, Jishnu Narayanan SJ, Achintya Kumar Dutta

In this work, we investigated the influence of base pairing and π-π stacking interactions on electron attachment induced shape resonances in the adenine-thymine (AT) base pair. Res…

physics.chem-ph2026

Efficient Implementation of Relativistic Coupled Cluster Linear Response Theory in Combination with Perturbation Sensitive Natural Spinors and Cholesky Decomposition Treatment of Two-electron Integrals

Sudipta Chakraborty, Muskan Begom, Xubo Wang +1

We present an efficient implementation of the low-cost linear-response coupled-cluster singles and doubles (LR-CCSD) method for computing static and frequency-dependent polarizabil…

physics.chem-ph2026

A reduced-cost two-component relativistic equation-of-motion coupled cluster method for the double electron attachment problem

Sujan Mandal, Tamoghna Mukhopadhyay, Achintya Kumar Dutta

We present a computationally efficient relativistic formulation of the equation-of-motion coupled-cluster (EOM-CC) method for the double electron attachment (DEA) problem. In this…