arXiv · 2002.04400
A numerical damped oscillator approach to constrained Schrödinger equations
Abstract
This article explains and illustrates the use of a set of coupled dynamical equations, second order in a fictitious time, which converges to solutions of stationary Schrödinger equations with additional constraints. We include three qualitative different numerical examples: the radial Schrödinger equation for the hydrogen atom; the two-dimensional harmonic oscillator with degenerate excited states; and finally a non-linear Schrödinger equation for rotating states. The presented method is intuitive, with analogies in classical mechanics for damped oscillators, and easy to implement, either in own coding, or with software for dynamical systems. Hence, we find it suitable to introduce it in a continuation course in quantum mechanics or generally in applied mathematics courses which contain computational parts.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
M. Ogren, M. Gulliksson. 2020-10-20. A numerical damped oscillator approach to constrained Schrödinger equations. https://doi.org/10.1088/1361-6404%2Faba70b
Cite the original work for its findings. Save a collection to share your selection of sources.