Research direction
Exploring the nucleus.
One question at a time.
Our research efforts are directed toward simulating the nucleus of an atom, using concepts of motion, relativity, and Lorentz forces as starting points for inquiry.
Motion as a starting point.
We aim to explore how modeled particles move and interact over time, and how changes in initial conditions and model assumptions affect their behavior. Simulation offers a way to examine these questions, visualize patterns, and develop ideas that can be tested.
Relativity and interacting forces.
The intended work considers relativistic descriptions of motion alongside Lorentz forces: the forces acting on charged particles in electric and magnetic fields. The aim is to investigate what these concepts can reveal within carefully defined models.
These are exploratory approaches. A model built around motion and electromagnetic forces should not be taken as a complete description of a nucleus; understanding nuclear structure also requires quantum physics and nuclear interactions.
AI-assisted advances in simulation.
Advances in simulation driven by AI are an important part of our research direction. We intend to explore AI assistance for developing simulation code, investigating model behavior, and identifying questions for further study.
Our approach will pair that assistance with human review, numerical checks, and comparisons with established physics. A useful simulation must be examined as carefully as the idea behind it.
Building a foundation.
The research program is in development. The descriptions here outline intended investigations, rather than completed findings or validated claims about atomic structure.