Related Experiment Video
Updated: Jan 23, 2026

Excitonic Hamiltonians for Calculating Optical Absorption Spectra and Optoelectronic Properties of Molecular Aggregates and Solids
Published on: May 27, 2020
Exact solution of an exciton energy for a monolayer medium
Abdullah Guvendi1, Ramazan Sahin1,2, Yusuf Sucu3
1Akdeniz University Faculty of Science, Department of Physics, Antalya, 07058, Turkey.
Abstract:
We present exact solutions of an energy spectrum of 2-interacting particles in which they seem to be relativistic fermions in 2 + 1 space-time dimensions. The 2 × 2 spinor equations of 2-interacting fermions through general central potential were separated covariantly into the relative and center of mass coordinates. First of all, the coupled first order differential equations depending on radial coordinate were derived from 2 × 2 spinor equations. Then, a second order radial differential equation was obtained and solved for Coulomb interaction potential. We apply our solutions to exciton phenomena for a free-standing monolayer medium. Since we regard exciton as isolated 2-interacting fermions in our model, any other external effect such as substrate was eliminated. Our results show that the obtained binding energies in our model are in agreement with the literature. Moreover, the decay time of an exciton was found out spontaneously in our calculations.
More Related Videos
Related Concept Videos
Fisher's Exact Test
Solution Formation
This selective...
Enthalpy of Solution
Determining the pH of Salt Solutions
What is Energy?
Free Energy

