A dielectric microsphere in a lower refractive index medium exhibits sharp optical resonances, called whispering gallery modes. These are sensitive probes of refractive index changes near the sphere surface and can be thus exploited for biosensing applications. Using evanescent field coupling via frustrated total internal reflection, we measured whispering gallery optical resonances of polystyrene microspheres of 30-45 mum diameter, held in aqueous buffer by optical tweezers, and found Q-factors of up to 4 times 106. We also demonstrated a monolithic sensor based on polystyrene microspheres in water attached onto an optical coupler via a solid separation layer index matched to water. As a proof of principle of the sensing capabilities, we m...
We experimentally demonstrate a monolithic sensor based on sharp whispering-gallery optical resonanc...
We experimentally demonstrate a monolithic sensor based on sharp whispering-gallery optical resonanc...
We propose the use of an optically trapped, dye doped polystyrene microsphere for spatial probing of...
A dielectric microsphere in a lower refractive index medium exhibits sharp optical resonances, calle...
A dielectric microsphere in a lower refractive index medium exhibits sharp optical resonances, calle...
A dielectric microsphere in a lower refractive index medium exhibits sharp optical resonances, calle...
The authors propose the use of an optically trapped, dye doped polystyrene microsphere for spatial p...
The authors propose the use of an optically trapped, dye doped polystyrene microsphere for spatial p...
Using evanescent field coupling via frustrated total internal reflection, we measured whispering-gal...
Using evanescent field coupling via frustrated total internal reflection, we measured whispering-gal...
Using evanescent field coupling via frustrated total internal reflection, we measured whispering-gal...
We present a novel concept for an optical biosensor based on Whispering Gallery Mode (WGM) excitatio...
A micron sized glass sphere is able to confine light to its interior volume. The trapped light descr...
We investigated the excitation of whispering gallery modes (WGMs) in a silica microsphere by evanesc...
We experimentally demonstrate a monolithic sensor based on sharp whispering-gallery optical resonanc...
We experimentally demonstrate a monolithic sensor based on sharp whispering-gallery optical resonanc...
We experimentally demonstrate a monolithic sensor based on sharp whispering-gallery optical resonanc...
We propose the use of an optically trapped, dye doped polystyrene microsphere for spatial probing of...
A dielectric microsphere in a lower refractive index medium exhibits sharp optical resonances, calle...
A dielectric microsphere in a lower refractive index medium exhibits sharp optical resonances, calle...
A dielectric microsphere in a lower refractive index medium exhibits sharp optical resonances, calle...
The authors propose the use of an optically trapped, dye doped polystyrene microsphere for spatial p...
The authors propose the use of an optically trapped, dye doped polystyrene microsphere for spatial p...
Using evanescent field coupling via frustrated total internal reflection, we measured whispering-gal...
Using evanescent field coupling via frustrated total internal reflection, we measured whispering-gal...
Using evanescent field coupling via frustrated total internal reflection, we measured whispering-gal...
We present a novel concept for an optical biosensor based on Whispering Gallery Mode (WGM) excitatio...
A micron sized glass sphere is able to confine light to its interior volume. The trapped light descr...
We investigated the excitation of whispering gallery modes (WGMs) in a silica microsphere by evanesc...
We experimentally demonstrate a monolithic sensor based on sharp whispering-gallery optical resonanc...
We experimentally demonstrate a monolithic sensor based on sharp whispering-gallery optical resonanc...
We experimentally demonstrate a monolithic sensor based on sharp whispering-gallery optical resonanc...
We propose the use of an optically trapped, dye doped polystyrene microsphere for spatial probing of...