Title :
Phase space engineering in optical microcavities I: Preserving near-field uniformity while inducing far-field directionality
Author :
Painchaud-April, Guillaume ; Poirier, Julien ; Gagnon, Denis ; Dubé, Louis J.
Author_Institution :
Dept. de Phys., de Genie Phys., et d´´Opt., Univ. Laval, Québec, QC, Canada
Abstract :
Optical microcavities have received much attention over the last decade from different research fields ranging from fundamental issues of cavity QED to specific applications such as microlasers and bio-sensors. A major issue in the latter applications is the difficulty to obtain directional emission of light in the far-field while keeping high energy densities inside the cavity (i.e. high quality factor). To improve our understanding of these systems, we have studied the annular cavity (a dielectric disk with a circular hole), where the distance cavity-hole centers d is used as a parameter to alter the properties of cavity resonances. We present results showing how one can affect the directionality of the far-field while preserving the uniformity (hence the quality factor) of the near-field simply by increasing the value of d. Interestingly, the transition between a uniform near- and far-field to a uniform near- and directional far-field is rather abrupt. We can explain this behavior quite nicely with a simple model, supported by full numerical calculations, and we predict that the effect will also be found in a large class of eigenmodes of the cavity.
Keywords :
Q-factor; eigenvalues and eigenfunctions; light scattering; light transmission; microcavities; optical resonators; quantum electrodynamics; annular cavity; cavity QED; cavity resonances; directional emission; distance cavity-hole centers; eigenmodes; far-field directionality; near-field uniformity; optical microcavities; optical resonators; phase space engineering; Biomedical optical imaging; Delay; Equations; Microcavities; Optical resonators; Optical sensors; Q factor; Resonance; Stimulated emission; Tunneling; Optical resonators; annular microcavities; control of directional emission; microlasers; potential/dynamical tunneling; whispering-gallery mode;
Conference_Titel :
Transparent Optical Networks (ICTON), 2010 12th International Conference on
Conference_Location :
Munich
Print_ISBN :
978-1-4244-7799-9
Electronic_ISBN :
978-1-4244-7797-5
DOI :
10.1109/ICTON.2010.5548943