Area of research
Condensed Matter Physics · Atomic and Molecular Physics, and Optics
Research interest
Research focused on Band gap and Magnetic moment, with related work in Atom (system on chip), Second-harmonic generation, Molecular dynamics. Notable publications include 'Hydrogen Adsorption of Mg-Doped Graphene Oxide: A First-Principles Study', 'Effects of finite spatial extent on Schwinger pair production', and 'Transformation of Optical Anisotropy Origins in Perovskite-Related Materials: A First-Principles Study'.
Singularity for the Drift-Flux System of Two-Phase Flow with the Generalized Chaplygin Gas
Structural and magnetic effects of Mn addition on CoB amorphous alloy by first principle simulation
Effect of Fe substitution with Co on the magnetic properties of Fe80P13C7 amorphous alloys: An abinitio molecular dynamics study
Time and Space Aggregation Recommendation Model Based on Synthetic Negative Samples
State of Health Monitoring and Remaining Useful Life Prediction of Lithium-Ion Batteries Based on Integrated Model
Effects of the Addition of Co or Ni Atoms on Structure and Magnetism of FeB Amorphous Alloy: Ab Initio Molecular Dynamics Simulation
Volume Modulation of Nonlinear Optical Properties by Cation Substitution
Hierarchical Contribution of Anions to Second Harmonic Generation in A<sub>2</sub>HgI<sub>4</sub> (A = Na, Ag, Cu) Regulated Dramatically by Metal Cations
Effects of finite spatial extent on Schwinger pair production
Transformation of Optical Anisotropy Origins in Perovskite-Related Materials: A First-Principles Study
The directed self-assembly of amphiphilic diblock copolymers in selective solvents
Metal-insulator transition in an one-dimensional extended Hubbard model at quarter filling
Insight into Nearest Neighboring Three- and Four-Electron Processes in a One-Dimensional Correlated Lattice System
Superconductivity in a SO(4) symmetric one-dimensional interacting system with diagonal three-body attraction
Hydrogen Adsorption of Mg-Doped Graphene Oxide: A First-Principles Study