Method for predicting whispering gallery mode spectra of spherical microresonators
Abstract
A full three-dimensional Finite-Difference Time-Domain (FDTD)-based toolkit is developed to simulate the whispering gallery modes of a microsphere in the vicinity of a dipole source. This provides a guide for experiments that rely on efficient coupling to the modes of microspheres. The resultant spectra are compared to those of analytic models used in the field. In contrast to the analytic models, the FDTD method is able to collect flux from a variety of possible collection regions, such as a disk-shaped region. The customizability of the technique allows one to consider a variety of mode excitation scenarios, which are particularly useful for investigating novel properties of optical resonators, and are valuable in assessing the viability of a resonator for biosensing.
Cite
@article{arxiv.1410.8608,
title = {Method for predicting whispering gallery mode spectra of spherical microresonators},
author = {Jonathan M. M. Hall and Shahraam Afshar V. and Matthew R. Henderson and Alexandre Francois and Tess Reynolds and Nicolas Riesen and Tanya M. Monro},
journal= {arXiv preprint arXiv:1410.8608},
year = {2015}
}
Comments
Published 10 Apr 2015 in Opt. Express Vol. 23, Issue 8, pp. 9924-9937; The FDTD toolkit supercomputer scripts are hosted at: http://sourceforge.net/projects/npps/files/FDTD_WGM_Simulator/