Title :
Modelization of the whispering gallery mode in microgear resonators using the Floquet-Bloch formalism
Author :
Huy, Kien Phan ; Morand, Alain ; Benech, Pierre
Author_Institution :
Inst. de Microelectronique Electromagnetisme et Photonique, UMR CNRS, Grenoble, France
fDate :
3/1/2005 12:00:00 AM
Abstract :
In this paper, a two-dimensional (2-D) method describing the whispering gallery mode in a microgear resonator is presented. The microgear is a microdisk surrounded by a circular grating. The method, which is based on the Floquet-Bloch formalism, analytically describes the field within the disk and outside the grating. On the other hand, the field within the grating is calculated using a finite-difference scheme in polar coordinates. Matching the boundary conditions, it is possible to work in a forced oscillation regime or in a free oscillation regime (laser mode). The resonant wavelength and quality factor can then be deduced. Compared to the coupled mode theory and to 2-D finite-difference time-domain computations, the method is faster and more accurate. Moreover, a polarization effect of the microgear is demonstrated. The TE polarization experiences a Q-factor improvement contrary to TM polarization. Finally, microgear structures prove to be more efficient than micro flowers.
Keywords :
Q-factor; diffraction gratings; finite difference time-domain analysis; laser cavity resonators; laser modes; light polarisation; microdisc lasers; whispering gallery modes; Floquet-Bloch formalism; TE polarization; TM polarization; boundary condition matching; circular grating; finite-difference scheme; forced oscillation regime; free oscillation regime; laser mode; microdisk; microgear resonators; polarization effect; quality factor; resonant wavelength; two-dimensional method; whispering gallery mode; Boundary conditions; Finite difference methods; Gratings; Laser modes; Laser theory; Polarization; Q factor; Resonance; Two dimensional displays; Whispering gallery modes; Coupled mode theory (CMT); Floquet–Bloch theory; finite-difference time domain (FDTD); gratings; integrated optics; micro laser; microdisk; microgear; resonator; whispering gallery mode (WGM);
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2004.841498