Localized lasing modes of triangular organic microlasers
arXiv:1403.7513 · doi:10.1103/PhysRevE.90.052922
Abstract
We investigated experimentally the ray-wave correspondence in organic microlasers of various triangular shapes. Triangular billiards are of interest since they are the simplest cases of polygonal billiards and the existence and properties of periodic orbits in triangles are not yet fully understood. The microlasers with symmetric shapes that were investigated exhibited states localized on simple periodic orbits, and their lasing characteristics like spectra and far-field distributions could be well explained by the properties of the periodic orbits. Furthermore, asymmetric triangles that do not feature simple periodic orbits were studied. Their lasing properties were found to be more complicated and could not be explained by periodic orbits.
19 pages, 29 figures
References in corpus (7)
- Inferring periodic orbits from spectra of simple shaped micro-lasers
- First Experimental Observation of Superscars in a Pseudointegrable Barrier Billiard
- An insight into polarization states of solid-state organic lasers
- Three-Dimensional Organic Microlasers with Low Lasing Thresholds Fabricated by Multiphoton Lithography
- Experimental test of a trace formula for two-dimensional dielectric resonators
- Fresnel filtering of Gaussian beams in microcavities
- Trace formula for dielectric cavities III: TE modes
Cited by in corpus (4)
- Spatial structure of lasing modes in wave-chaotic semiconductor microcavities
- Dynamical control of square microlaser emission via symmetry classes
- Consequences of a wave-correction extended ray dynamics for integrable and chaotic optical microcavities
- Ray picture and ray-wave correspondence in triangular microlasers