MATLAB simulator for time evolution of quantum wave packets using the Split-Step Fourier Method
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Updated
Sep 11, 2026 - MATLAB
MATLAB simulator for time evolution of quantum wave packets using the Split-Step Fourier Method
A numerical framework for solving quantum mechanical eigenvalue problems using matrix methods and the Lanczos algorithm, with both serial and parallel (MPI+OpenMP) implementations.
A collection of computational physics notebooks exploring numerical methods, stochastic processes, statistical models, and physical simulations in Python.
Validated numerical laboratory for low-energy quantum scattering: scattering length, effective range,.
Autonomous & manual lunar descent flight simulator built in MATLAB App Designer using discrete Model Predictive Control (MPC).
Here's a series of undergrad level physics projects to practice the basics of scientific python and common numerical methods. I wrote much of this during my undergrad years and found these quite useful in getting me comfortable with day-to-day computational work as a grad student.
Solve the time-dependent Schrödinger equation with the Split-Step Fourier Method in MATLAB, simulating quantum wave packet evolution under arbitrary potentials.
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