Magnetooptical Properties of Rydberg Excitons - Center-of-Mass Quantization Approach
arXiv:1610.00131 · doi:10.1103/PhysRevB.95.075204
Abstract
We show how to compute the magnetooptical functions (absorption, reflection, and transmission) when Rydberg Exciton-Polaritons appear, including the effect of the coherence between the electron-hole pair and the electromagnetic field, and the polaritonic effect. Using the Real Density Matrix Approach the analytical expressions for magnetooptical functions are obtained and numerical calculations for Cu0 crystal are performed. The influence of the strength of applied external magnetic field on the resonance displacement of excitonic spectra is discussed. We report a good agreement with recently published experimental data.
26 pages, 10 figures
References in corpus (5)
Cited by in corpus (5)
- GOE-GUE-Poisson transitions in the nearest neighbor spacing distribution of magnetoexcitons
- Exciton-polaritons in cuprous oxide: Theory and comparison with experiment
- Nonlinear Optical Properties and Self-Kerr Effect of Rydberg Excitons in CuO
- Crossover between the Gaussian orthogonal ensemble, the Gaussian unitary ensemble, and Poissonian statistics
- Exciton-phonon interaction breaking all antiunitary symmetries in external magnetic fields