We propose a novel approach for wide-field fluorescence imaging based on dielectric multilayers on glass coverslides. It is demonstrated that the fluorescence radiated by emitters in proximity to the multilayer surface can couple to Bloch Surface Waves and subsequently leaks into the glass. The coupled fluorescence is beamed with low divergence according to the Bloch Surface Waves spectral/angular dispersion and then collected with a low-magnification imaging system. Since the coupling between emitter and surface modes is dependent on the surface local morphology, we find a strong spectral deformation of the collected fluorescence spectrum depending on the corresponding surface relieves imaged
The lateral confinement of Bloch surface waves on a patterned multilayer is investigated by means of...
We consider the effect of planar dielectric interfaces (e.g., solid/liquid) on the fluorescence emis...
International audienceWe present dedicated dielectric multilayers (DM) optimized to be resonant unde...
We propose a novel approach for wide-field fluorescence imaging based on dielectric multilayers on g...
We propose a novel approach for wide-field fluorescence imaging based on dielectric multilayers on g...
We propose a novel approach for wide-field fluorescence imaging based on dielectric multil...
An alternative method to plasmon techniques for the enhancement, control and detection of fluorescen...
An alternative method to plasmon techniques for the enhancement, control and detection of fluorescen...
A fluorescent dielectric multilayer is exploited for label-free sensing in aqueous microenvironment....
The use of linear and circular subwavelength gratings for improving the fluorescence extraction from...
A fluorescent dielectric multilayer is exploited for label-free sensing in aqueous microenvironment....
The use of linear and circular subwavelength gratings for improving the fluorescence extraction from...
A new method of specimen illumination for wide-field fluorescence microscopy has been presented. Thi...
The lateral confinement of Bloch surface waves on a patterned multilayer is investigated by means of...
A new method of specimen illumination for wide-field fluorescence microscopy has been presented. Thi...
The lateral confinement of Bloch surface waves on a patterned multilayer is investigated by means of...
We consider the effect of planar dielectric interfaces (e.g., solid/liquid) on the fluorescence emis...
International audienceWe present dedicated dielectric multilayers (DM) optimized to be resonant unde...
We propose a novel approach for wide-field fluorescence imaging based on dielectric multilayers on g...
We propose a novel approach for wide-field fluorescence imaging based on dielectric multilayers on g...
We propose a novel approach for wide-field fluorescence imaging based on dielectric multil...
An alternative method to plasmon techniques for the enhancement, control and detection of fluorescen...
An alternative method to plasmon techniques for the enhancement, control and detection of fluorescen...
A fluorescent dielectric multilayer is exploited for label-free sensing in aqueous microenvironment....
The use of linear and circular subwavelength gratings for improving the fluorescence extraction from...
A fluorescent dielectric multilayer is exploited for label-free sensing in aqueous microenvironment....
The use of linear and circular subwavelength gratings for improving the fluorescence extraction from...
A new method of specimen illumination for wide-field fluorescence microscopy has been presented. Thi...
The lateral confinement of Bloch surface waves on a patterned multilayer is investigated by means of...
A new method of specimen illumination for wide-field fluorescence microscopy has been presented. Thi...
The lateral confinement of Bloch surface waves on a patterned multilayer is investigated by means of...
We consider the effect of planar dielectric interfaces (e.g., solid/liquid) on the fluorescence emis...
International audienceWe present dedicated dielectric multilayers (DM) optimized to be resonant unde...