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6 papers

physics.chem-ph2026

Correlation-consistent Gaussian basis sets for copper solids from material-constrained atomic optimization

Jincheng Yu, Xiaoyu Zhang, Min-Ye Zhang +3

The authors introduce a material-constrained atomic optimization (MCAO) framework to generate correlation‑consistent Gaussian basis sets for copper solids that avoid linear‑depende…

cond-mat.mtrl-sci2026

Efficient Bethe-Salpeter Equation Calculations Based on Numerical Atomic Orbitals and Norm-Conserving Pseudopotentials: Dual--Mesh Strategy

Ziqing Guan, Yu Cao, Min-Ye Zhang +3

We present an efficient implementation of the Bethe--Salpeter equation (BSE) based on numerical atomic orbitals (NAOs) and norm-conserving pseudopotentials within the ABACUS+LibRPA…

cond-mat.mtrl-sci2026

implementation based on the pseudopotential and numerical-atomic-orbital basis-set framework: Algorithms and benchmarks

Huanjing Gong, Min-Ye Zhang, Peize Lin +4

The method delivers substantially improved accuracy in electronic band structure calculations over conventional Kohn-Sham density functional theory (KS-DFT) by explicitly inco…

cond-mat.mtrl-sci2026

Low-scaling \textit{GW} calculations of quasi-particle energies for extended systems within the numerical atomic orbital framework

Min-Ye Zhang, Peize Lin, Rong Shi +1

The many-body perturbation theory within the approximation is a widely used method for describing the electronic band structures in real materials. Its application to large-sc…

cond-mat.mtrl-sci2026

All-electron Quasiparticle Self-consistent GW for Molecules and Periodic Systems within the Numerical Atomic Orbital Framework

Bohan Jia, Min-Ye Zhang, Ziqing Guan +2

We report an all-electron implementation of the quasiparticle self-consistent GW (QSGW) method for molecular and periodic systems within the framework of numerical atomic orbitals…

physics.comp-ph2025

Applying Space-Group Symmetry to Speed up Hybrid-Functional Calculations within the Framework of Numerical Atomic Orbitals

Yu Cao, Min-Ye Zhang, Peize Lin +2

Building upon the efficient implementation of hybrid density functionals (HDFs) for large-scale periodic systems within the framework of numerical atomic orbital bases using the lo…