Outer Resonances and Effective Potential Analogy in Two-Dimensional Dielectric Cavities
arXiv:0903.4034 · doi:10.1016/j.physleta.2010.02.055
Abstract
Outer resonances are studied as one type of quasinormal modes in two-dimensional dielectric cavities with refractive index . The outer resonances can be verified as the resonances which survive only outside the cavity in the small opening limit of the dielectric disk. We have confirmed that the outer resonances universally exist in deformed cavities irrespective of the geometry of cavity and they split into nearly degenerate states in slightly deformed cavity. Also we pointed out that the effective potential analogy is inapplicable to the description of outer resonances. Since most outer resonances in the dielectric cavities have quite high leakages, they would affect to the broad background in the density of states. Especially, for TE polarization case, relatively low-leaky outer resonances exist and it presents the possibility that they can interact with the inner resonances and affect lasing modes.
References in corpus (6)
- Combining directional light output and ultralow loss in deformed microdisks
- Formation of long-lived, scarlike modes near avoided resonance crossings in optical microcavities
- Asymmetric scattering and non-orthogonal mode patterns in optical micro-spirals
- Non-Hamiltonian dynamics in optical microcavities resulting from wave-inspired corrections to geometric optics
- Internal and External Resonances of Dielectric Disks
- Resonances in a circular dielectric cavity
Cited by in corpus (4)
- Asymptotics for 2D whispering gallery modes in optical micro-disks with radially varying index
- Non-Hermitian Hamiltonian and Lamb shift in circular dielectric microcavity
- Dynamics of Morphology-Dependent Resonances by Openness in Dielectric Disk for TE polarization
- Ray model and ray-wave correspondence in coupled optical microdisks