Theoretical Physics • Nonlinear Dynamics • Scientific Computing
I work at the intersection of theoretical physics and computational modeling, with emphasis on:
- Nonlinear dynamical systems and chaos
- Cosmological models with scalar fields
- General relativity and geodesic analysis
- Numerical methods for high-dimensional systems
- Analysis of chaotic behavior in cosmological scalar field models
- Computation of Lyapunov exponents and bifurcation structures
- Study of invariant manifolds and strange attractors
- Development of high-performance numerical solvers (Python, C, Fortran)
Languages
Python • C • Fortran • LaTeX • Mathematica
Scientific Libraries
NumPy • SciPy • Matplotlib • SymPy • Pandas
HPC / Parallel Computing
GSL • OpenMP • MPI
Tools & Environment
Git • Linux • VSCode • Jupyter
- Dynamical system integration (RK methods, adaptive solvers)
- Poincaré sections and phase space analysis
- Bifurcation diagrams and parameter exploration
- Lyapunov spectrum computation
- 📄 Currículo Lattes
Scientific computing meets nonlinear dynamics ⚡