This book illustrates original pathways to manipulate light at the nanoscale by means of surface electromagnetic waves (here, Bloch surface waves, BSWs) on planar dielectric multilayers, also known as one-dimensional photonic crystals. This approach is particularly valuable as it represents an effective alternative to the widely exploited surface plasmon paradigm. After a brief overview on the fundamentals of BSWs, several significant applications of BSW-sustaining structures are described. Particular consideration is given to the propagation, guiding, and diffraction of BSW-coupled radiation. Further, the interaction of organic emitters with BSWs on planar and corrugated multilayers is investigated, including fluorescence beaming in free s...
The Ph.D. thesis is focused on the development of a label-free optical biosensor based on the excita...
The use of linear and circular subwavelength gratings for improving the fluorescence extraction from...
In this work, we make a step forward in the manipulation of light on the surface of one-dimensional ...
This book illustrates original pathways to manipulate light at the nanoscale by means of surface ele...
This book illustrates original pathways to manipulate light at the nanoscale by means of surface ele...
Bloch Surface Waves (BSWs) are propagation modes that exist at the interface between a homogeneous m...
Bloch Surface Waves (BSWs) are propagation modes that exist at the interface between a homogeneous m...
During the past decade the investigations on the use of optical nanostructures for sensing applicati...
During the past decade the investigations on the use of optical nanostructures for sensing applicati...
We report on the experimental characterization of the peculiar properties of surface electromagnetic...
A multilayered dielectric structure, namely a one dimensional photonic crystal (1DPC), is proposed a...
An alternative route to plasmon-controlled fluorescence for improving the detection of fluorescence ...
An alternative route to plasmon-controlled fluorescence for improving the detection of fluorescence ...
We report on the experimental characterization of the peculiar properties of surface electromagnetic...
The Ph.D. thesis is focused on the development of a label-free optical biosensor based on the excita...
The Ph.D. thesis is focused on the development of a label-free optical biosensor based on the excita...
The use of linear and circular subwavelength gratings for improving the fluorescence extraction from...
In this work, we make a step forward in the manipulation of light on the surface of one-dimensional ...
This book illustrates original pathways to manipulate light at the nanoscale by means of surface ele...
This book illustrates original pathways to manipulate light at the nanoscale by means of surface ele...
Bloch Surface Waves (BSWs) are propagation modes that exist at the interface between a homogeneous m...
Bloch Surface Waves (BSWs) are propagation modes that exist at the interface between a homogeneous m...
During the past decade the investigations on the use of optical nanostructures for sensing applicati...
During the past decade the investigations on the use of optical nanostructures for sensing applicati...
We report on the experimental characterization of the peculiar properties of surface electromagnetic...
A multilayered dielectric structure, namely a one dimensional photonic crystal (1DPC), is proposed a...
An alternative route to plasmon-controlled fluorescence for improving the detection of fluorescence ...
An alternative route to plasmon-controlled fluorescence for improving the detection of fluorescence ...
We report on the experimental characterization of the peculiar properties of surface electromagnetic...
The Ph.D. thesis is focused on the development of a label-free optical biosensor based on the excita...
The Ph.D. thesis is focused on the development of a label-free optical biosensor based on the excita...
The use of linear and circular subwavelength gratings for improving the fluorescence extraction from...
In this work, we make a step forward in the manipulation of light on the surface of one-dimensional ...