collaborators

7 papers

cond-mat.mtrl-sci2026

All-Electron Single-Atom Reference Correction for Absolute Transition Energies in Fixed-Reference PAW-XCH Calculations

Yinan Wang, Teruyasu Mizoguchi

The transition energy of a core-loss spectrum comprises a transferable atomic core-reference contribution and a material-dependent response that determines chemical shifts. Density…

cond-mat.mtrl-sci2026

Crystal structure prediction with nuclear quantum and finite-temperature effects via deep free energy learning

Xiaoyang Wang, Yinan Wang, Wenbo Zhao +4

Accurate crystal structure prediction (CSP) requires accounting for finite-temperature and nuclear quantum effects, yet first-principles evaluation of the free energy surface (FES)…

cond-mat.mtrl-sci2026

Decoding Dopant-Induced Electronic Modulation in Graphene via Region-Resolved Machine Learning of XANES

Yinan Wang, Arpita Varadwaj, Teruyasu Mizoguchi +1

Revealing how heteroatom doping alters the local electronic structure of graphene is crucial for understanding and controlling its functional properties. In this study, we combine…

physics.optics2026

From Disorder to Function: Entropy-Engineered Broadband Photonics with Ion-Transport-Stabilized Spectral Fidelity

Yuxiang Xin, Chen-Xin Yu, Jianru Wang +14

The high-entropy halide-perovskite field has expanded rapidly, yet a key gap remains: configurational entropy is not yet a reliable, designable lever to co-deliver expanded photoni…

cond-mat.mtrl-sci2025

Integrating Deep-Learning-Based Magnetic Model and Non-Collinear Spin-Constrained Method: Methodology, Implementation and Application

Daye Zheng, Xingliang Peng, Yike Huang +8

We propose a non-collinear spin-constrained method that generates training data for deep-learning-based magnetic model, which provides a powerful tool for studying complex magnetic…

cond-mat.mtrl-sci2025

OpenCSP: A Deep Learning Framework for Crystal Structure Prediction from Ambient to High Pressure

Yinan Wang, Xiaoyang Wang, Zhenyu Wang +3

High-pressure crystal structure prediction (CSP) underpins advances in condensed matter physics, planetary science, and materials discovery. Yet, most large atomistic models are tr…