Q-factor limits for far-field detection of whispering gallery modes in active microspheres
Nicolas Riesen, Tess Reynolds, F. Alexandre, Matthew R. Henderson, Tanya M. Monro
Abstract
Nicolas Riesen, Tess Reynolds, F. Alexandre, Matthew R. Henderson, Tanya M. Monro
Abstract
This paper investigates the Q-factor limits imposed on the far-field detection of the whispering gallery modes of active microspherical resonators. It is shown that the Q-factor measured for a given active microsphere in the far-field using a microscope is significantly lower than that measured using evanescent field collection through a taper. The discrepancy is attributed to the inevitable small asphericity of microspheres that results in mode-splitting which becomes unresolvable in the far-field. Analytic expressions quantifying the Q-factor limits due to small levels of asphericity are subsequently derived.
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This paper investigates the Q-factor limits imposed on the far-field detection of the whispering gallery modes of active microspherical resonators. It is shown that the Q-factor measured for a given active microsphere in the far-field using a microscope is significantly lower than that measured using evanescent field collection through a taper. The discrepancy is attributed to the inevitable small asphericity of microspheres that results in mode-splitting which becomes unresolvable in the far-field. Analytic expressions quantifying the Q-factor limits due to small levels of asphericity are subsequently derived.
Key concepts: Whispering-gallery wave, Near and far field, Optics, Q factor, Resonator, Microsphere, Microscope, Field (mathematics)