collaborators

7 papers

cond-mat.mtrl-sci2026

First-principles carrier mobility and optical absorption of strained ZnO with self-consistent Hubbard interactions

Hong-Guk Min, Wooil Yang, Sabyasachi Tiwari +2

Carrier mobility and optical absorption are key performance parameters of oxide semiconductors in transparent and flexible displays. We use a newly developed density-functional per…

cs.LG2026

Robust and Interpretable Adaptation of Equivariant Materials Foundation Models via Sparsity-promoting Fine-tuning

Youngwoo Cho, Seunghoon Yi, Wooil Yang +6

Pre-trained materials foundation models, or machine learning interatomic potentials, leverage general physicochemical knowledge to effectively approximate potential energy surfaces…

cond-mat.mtrl-sci2025

Comparing Hubbard parameters from linear-response theory and Hartree-Fock-based approach

Wooil Yang, Iurii Timrov, Francesco Aquilante +1

Density-functional theory with on-site and inter-site Hubbard corrections (DFT++) is a powerful and accurate method for predicting various properties of transition-me…

cond-mat.mes-hall2025

Self-consistent tight-binding calculations with extended Hubbard interactions in rhombohedral multilayer graphene

Dongkyu Lee, Wooil Yang, Young-Woo Son +1

We study the mean-field broken symmetry phases of charge neutral multilayer rhombohedral graphene within tight-binding approximations including self-consistent extended Hubbard int…

cond-mat.mtrl-sci2025

First-principles electron-phonon interactions with self-consistent Hubbard interaction: an application to transparent conductive oxides

Wooil Yang, Sabyasachi Tiwari, Feliciano Giustino +1

The ab initio computational method known as Hubbard-corrected density functional theory (DFT+) captures well ground electronic structures of a set of solids that are poorly desc…

cond-mat.mtrl-sci2025

A DFT++ study of pristine and oxygen-deficient HfO with self-consistent Hubbard parameters

Yudi Yang, Wooil Yang, Young-Woo Son +1

HfO-based ferroelectrics have emerged as promising materials for advanced nanoelectronics, with their robust polarization and silicon compatibility making them ideal for high-d…