
معرفی
Dr. Javad Komijani is a Research Fellow in Computational Physics at the Institute for Theoretical Physics, ETH Zürich. His work focuses on precision calculations in quantum chromodynamics (QCD) and electroweak interactions, particularly in the context of lattice gauge theory and computational methods.
Research interests:
- Lattice QCD simulations for hadronic vacuum polarization (HVP) and baryon mass calculations
- Electromagnetic effects in QCD+QED frameworks
- GPU-accelerated algorithms and numerical techniques for large-scale simulations
- Machine learning applications to quantum field theories
Publications emphasize cutting-edge advancements in precision physics, including contributions to the muon g-2 anomaly and isospin symmetry-breaking corrections. Collaborative efforts with experimental initiatives like MUonE highlight his bridge between theoretical and experimental physics.
No scientific awards or formal advisees are listed in available records. His research is anchored at ETH Zürich's Institute for Theoretical Physics, where he contributes to both foundational and applied theoretical physics projects.



