We theoretically analyze, fabricate, and characterize a three-dimensional plasmonic nanostructure that exhibits a strong and isotropic magnetic response in the visible spectral domain. Using two different bottom-up approaches that rely on self-organization and colloidal nanochemistry, we fabricate clusters consisting of dielectric core spheres, which are smaller than the wavelength of the incident radiation and are decorated by a large number of metallic nanospheres. Hence, despite having a complicated inner geometry, such a core–shell particle is sufficiently small to be perceived as an individual object in the far field. The optical properties of such complex plasmonic core–shell particles are discussed for two different core diameters
The generation in artificial composites of a magnetic response to light, comparable in magnitude wit...
We present a full experimental characterization of isotropic artificial optical magnetism at visible...
An investigation of the optical properties of off-centered core–shell segregated Au–M (M = Ag, Pd) n...
We theoretically analyze, fabricate, and characterize a three-dimensional plasmonic nanostructure th...
We theoretically analyze, fabricate, and characterize a three-dimensional plasmonic nanostructure th...
The self-assembly of colloids is an alternative to top-down processing that enables the fabrication ...
The strong resonant interaction of plasmonic particles with light has been used in a wide range of a...
The combined optical and magnetic properties of magnetic-plasmonic core-shell nanoparticles (NPs) ma...
Self-assembled clusters of metallic nanoparticles separated by nanometric gaps generate strong plasm...
We report an investigation on the optical properties of three-dimensional nanoclusters (NCs) made by...
ABSTRACT: Self-assembled clusters of metallic nanoparticles separated by nanometric gaps generate st...
Over the last decade, the field of self-assembled metamaterials exhibiting unusual properties such a...
We reveal the significance of plasmonic nanoparticle’s (NP) shape and its surface morphology en rout...
Photonic nanostructures made of a dielectric sphere covered with many metallic nanospheres fabricate...
Self-assembled clusters of metallic nanoparticles separated by nanometric gaps generate strong plasm...
The generation in artificial composites of a magnetic response to light, comparable in magnitude wit...
We present a full experimental characterization of isotropic artificial optical magnetism at visible...
An investigation of the optical properties of off-centered core–shell segregated Au–M (M = Ag, Pd) n...
We theoretically analyze, fabricate, and characterize a three-dimensional plasmonic nanostructure th...
We theoretically analyze, fabricate, and characterize a three-dimensional plasmonic nanostructure th...
The self-assembly of colloids is an alternative to top-down processing that enables the fabrication ...
The strong resonant interaction of plasmonic particles with light has been used in a wide range of a...
The combined optical and magnetic properties of magnetic-plasmonic core-shell nanoparticles (NPs) ma...
Self-assembled clusters of metallic nanoparticles separated by nanometric gaps generate strong plasm...
We report an investigation on the optical properties of three-dimensional nanoclusters (NCs) made by...
ABSTRACT: Self-assembled clusters of metallic nanoparticles separated by nanometric gaps generate st...
Over the last decade, the field of self-assembled metamaterials exhibiting unusual properties such a...
We reveal the significance of plasmonic nanoparticle’s (NP) shape and its surface morphology en rout...
Photonic nanostructures made of a dielectric sphere covered with many metallic nanospheres fabricate...
Self-assembled clusters of metallic nanoparticles separated by nanometric gaps generate strong plasm...
The generation in artificial composites of a magnetic response to light, comparable in magnitude wit...
We present a full experimental characterization of isotropic artificial optical magnetism at visible...
An investigation of the optical properties of off-centered core–shell segregated Au–M (M = Ag, Pd) n...