Crossing and anti-crossing effects of polaritons in a magnetic-semiconductor superlattice influenced by an external magnetic field
arXiv:1702.00640 · doi:10.1016/j.spmi.2017.01.040
Abstract
Crossing and anti-crossing effects in dispersion characteristics of both bulk and surface polaritons in a magnetic-semiconductor superlattice influenced by an external static magnetic field being in the Faraday geometry are discussed. The bulk polaritons are classified as eigenwaves with right-handed and left-handed elliptically polarized states, whereas the surface polaritons are considered as hybrid modes having a predominant effect of either magnetic or semiconductor subsystem, and distinctions in dispersion characteristics of such polaritons are revealed involving the concept of critical points.
20 pages, 4 figures
References in corpus (2)
Cited by in corpus (4)
- Bi-hyperbolic isofrequency surface in a magnetic-semiconductor superlattice
- Coexistence of bulk and surface polaritons in a~magnetic-semiconductor superlattice influenced by a transverse magnetic field
- Magnetically induced topological transitions of hyperbolic dispersion in biaxial gyrotropic media
- Control of single-mode operation in a circular waveguide filled by a longitudinally magnetized gyroelectromagnetic medium