collaborators

5 papers

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

Relativistic unitary coupled cluster method for ground-state molecular properties

Kamal Majee, Somesh Chamoli, Malaya K. Nayak +1

We propose a relativistic unitary coupled cluster (UCC) expectation value approach for computing first-order properties of heavy-element systems. Both perturbative (UCC3) and non-p…

physics.chem-ph2025

Reduced-cost Relativistic Equation-of-Motion Coupled Cluster Method based on Frozen Natural Spinors: A State-Specific Approach

Tamoghna Mukhopadhyay, Mrinal Thapa, Somesh Chamoli +4

We present the theoretical framework, implementation, and benchmark results for a reduced-cost relativistic equation-of-motion coupled cluster singles and doubles (EOM-CCSD) method…

physics.chem-ph2025

A Reduced Cost Two-component Relativistic Equation-of-Motion Coupled Cluster Method for Ionization Potential

Somesh Chamoli, Malaya K. Nayak, Achintya Kumar Dutta

We report an efficient implementation of the ionization potential (IP) variant of the equation-of-motion coupled cluster (IP-EOM-CC) method based on the exact two-component atomic…

physics.chem-ph2025

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

Somesh Chamoli, Xubo Wang, Chaoqun Zhang +2

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…