Whispering gallery mode resonators are small, radially symmetric dielectrics that trap light through continuous total internal reflection. The resonant condition at which light is efficiently confined within the structure is linked with refractive index, which has led to the development of sensitive label-free sensing schemes based on whispering gallery mode resonators. One resonator design uses inexpensive high index glass microspheres that offer intrinsically superior optical characteristics, but have proven difficult to multiplex and integrate with the fluidics for sample delivery and fluid exchange necessary for assay development. Recently, we introduced a fluorescence imaging approach that enables large scale multiplexing with microsph...
Whispering gallery mode (WGM) microresonators, thanks to their unique properties, have allowed resea...
The rapid development of optofluidic technologies in recent years has seen the need for sensing plat...
We propose the use of an optically trapped, dye doped polystyrene microsphere for spatial probing of...
Whispering gallery mode resonators are small, radially symmetric dielectrics that trap light through...
Optical Whispering gallery mode (WGM) resonators have attracted attention due to their label-free an...
Optical Whispering gallery mode (WGM) resonators have attracted attention due to their label-free an...
Optical microcavities are desirable label-free sensors due to their sensitive detection capabilities...
Optical microcavities are desirable label-free sensors due to their sensitive detection capabilities...
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...
A dielectric microsphere in a lower refractive index medium exhibits sharp optical resonances, calle...
A micron sized glass sphere is able to confine light to its interior volume. The trapped light descr...
Whispering gallery mode (WGM) resonators have become increasingly diverse in terms of both architect...
Whispering gallery mode (WGM) microresonators, thanks to their unique properties, have allowed resea...
Whispering gallery mode (WGM) microresonators, thanks to their unique properties, have allowed resea...
The rapid development of optofluidic technologies in recent years has seen the need for sensing plat...
We propose the use of an optically trapped, dye doped polystyrene microsphere for spatial probing of...
Whispering gallery mode resonators are small, radially symmetric dielectrics that trap light through...
Optical Whispering gallery mode (WGM) resonators have attracted attention due to their label-free an...
Optical Whispering gallery mode (WGM) resonators have attracted attention due to their label-free an...
Optical microcavities are desirable label-free sensors due to their sensitive detection capabilities...
Optical microcavities are desirable label-free sensors due to their sensitive detection capabilities...
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...
A dielectric microsphere in a lower refractive index medium exhibits sharp optical resonances, calle...
A micron sized glass sphere is able to confine light to its interior volume. The trapped light descr...
Whispering gallery mode (WGM) resonators have become increasingly diverse in terms of both architect...
Whispering gallery mode (WGM) microresonators, thanks to their unique properties, have allowed resea...
Whispering gallery mode (WGM) microresonators, thanks to their unique properties, have allowed resea...
The rapid development of optofluidic technologies in recent years has seen the need for sensing plat...
We propose the use of an optically trapped, dye doped polystyrene microsphere for spatial probing of...