Implements the continuous Galerkin spectral element method to solve the Schrödinger equation
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Updated
Dec 9, 2021 - C++
Implements the continuous Galerkin spectral element method to solve the Schrödinger equation
Solving the time dependent Schrödinger equation using the Crank-Nicolson method
This is a program written in C++ to solve for the eigen energies in an arbitrary 1D potential profile, using a finite elements approach.
Implementation of RK4 algorithm to solve 2D Schrödinger equation
atus-pro unstable playground
Schrödinger's Wave Function Visualization
An intuitive approach to introducing the Schrodinger wave equation using a classical particle, a cloud of similar particles representing uncertainty of velocity and position, and a histogram. We generate a cloud of particles to show how a stochastic approach to quantum uncertainty yields an expectation value for the classical particle which deve…
水素原子とヘリウム原子に対するSchrödinger/Scalar Dirac/Dirac方程式のソルバー
Visualization of the hydrogen atom orbitals using the analytical solution of the time independent Schrodinger equation for the hydrogen atom
TALISES (This Ain't a LInear Schrödinger Equation Solver) is an easy-to-use C++ implementation of the Split-Step Fourier Method, for numeric calculation of a wave function's time-propagation under a (non)linear Schrödinger equation.
The Dirac Engine is a C++ physics engine which simulates quantum phenomena like basic quantum and wave mechanics, spin 1/2 particles and their antimatter partners in 1D, 2D and 3D.
Calculator of ARPES spectra for depletion/accumulation surface layers
Advanced Fiber-optic communication systems simulator via split-step Fourier method
Scattering on a Lennard-Jones potential, cross-section computation.
Augmented Plane Waves (both APW and LAPW), band structure computation
Korringa-Kohn-Rostoker (multiple scattering theory/Green's function method) band structure calculation
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