We have developed a versatile method to fabricate gold particle-in-ring and magnetic particle-in-nanobowl plasmonic nano-structures, which are of great potential for the investigation of the surface enhanced Raman scattering spectroscopy and the magneto-optical effect, respectively.status: publishe
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
Metallic nanostructures can be used to manipulate light on the subwavelength scale to create tailore...
ABSTRACT: Placing metallic nanoparticles inside cavities, rather than in dimers, greatly improves th...
Plasmonics is a rapidly emerging subdiscipline of nanophotonics that studies the interaction between...
Interest in metal nanostructures stems from their unique optical properties related with single-part...
In this thesis, we use plasmonic materials to achieve enhanced optical properties, including the enh...
The field of nanotechnology has grown exponentially in recent years. As advancements are made in syn...
Metallic nanostructures support resonant oscillations of their conduction band electrons called loca...
Placing metallic nanoparticles inside cavities, rather than in dimers, greatly improves their plasmo...
Nanoplasmonics can be defined as the control of the flow of light by objects that are smaller than t...
To achieve the societal and technological ambitions set for nanotechnology in general, multifunction...
Title: Optical Responses of Biomolecules on Regular Metal Plasmonic Nanostructures Author: Martin Šu...
The plasmonic response of gold can be utilized to enhance the incident electromagnetic (EM) field by...
A highly ordered particle-in-bowl (PIB) nanostructure array is designed and fabricated to achieve la...
Plasmonics is the science and technology exploiting the optical properties of surface free electrons...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
Metallic nanostructures can be used to manipulate light on the subwavelength scale to create tailore...
ABSTRACT: Placing metallic nanoparticles inside cavities, rather than in dimers, greatly improves th...
Plasmonics is a rapidly emerging subdiscipline of nanophotonics that studies the interaction between...
Interest in metal nanostructures stems from their unique optical properties related with single-part...
In this thesis, we use plasmonic materials to achieve enhanced optical properties, including the enh...
The field of nanotechnology has grown exponentially in recent years. As advancements are made in syn...
Metallic nanostructures support resonant oscillations of their conduction band electrons called loca...
Placing metallic nanoparticles inside cavities, rather than in dimers, greatly improves their plasmo...
Nanoplasmonics can be defined as the control of the flow of light by objects that are smaller than t...
To achieve the societal and technological ambitions set for nanotechnology in general, multifunction...
Title: Optical Responses of Biomolecules on Regular Metal Plasmonic Nanostructures Author: Martin Šu...
The plasmonic response of gold can be utilized to enhance the incident electromagnetic (EM) field by...
A highly ordered particle-in-bowl (PIB) nanostructure array is designed and fabricated to achieve la...
Plasmonics is the science and technology exploiting the optical properties of surface free electrons...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
Metallic nanostructures can be used to manipulate light on the subwavelength scale to create tailore...
ABSTRACT: Placing metallic nanoparticles inside cavities, rather than in dimers, greatly improves th...