Optical magnetic responses and subwavelength localization of light, driven by Mie resonances in high-index nanoparticles, could spur new, breakthrough applications for nanoantennas, nanolasers, highly efficient metasurfaces and ultrafast metadevices.The authors are indebted to the Australian Research Council for support, and also thank many of their numerous colleagues and collaborators for helping to develop this new, exciting field
Research in nanophotonics is yielding advances towards grand challenges that have not previously bee...
Metamaterials are artificial materials that consist of subwavelength unit cells (meta-atoms). They a...
An enhanced emission of high quantum yield molecules coupled to dielectric metasurfaces formed by pe...
Most optical metamaterials fabricated and studied to date employ metallic components resulting in si...
Recent rapid progress in subwavelength optics and nanophotonics with dielectric structures is underp...
Scattering of electromagnetic waves by subwavelength objects is accompanied by the excitation of ele...
Recent progress in metaoptics driven by Mie resonances of high-index dielectric nanoparticles provid...
Metamaterials are artificial electromagnetic media that are structured on the subwavelength scale. S...
We demonstrate that Mie resonances can play a crucial role in all-dielectric meta-optics enhancing m...
Rapid progress in the fields of plasmonics and metamaterials is driven by their ability to enhance n...
All-dielectric subwavelength structures made of high-refractive-index materials combine a unique set...
Control of light by an external magnetic field is one of the important methods for modulation of its...
We reveal that strong near-field coupling effects can be observed for dissimilar Mie-resonant dielec...
Nanoparticles made of High Refractive Index dielectric materials have been proposed as an alternativ...
We demonstrate both experimentally and numerically multifold enhancement of magneto-optical effects ...
Research in nanophotonics is yielding advances towards grand challenges that have not previously bee...
Metamaterials are artificial materials that consist of subwavelength unit cells (meta-atoms). They a...
An enhanced emission of high quantum yield molecules coupled to dielectric metasurfaces formed by pe...
Most optical metamaterials fabricated and studied to date employ metallic components resulting in si...
Recent rapid progress in subwavelength optics and nanophotonics with dielectric structures is underp...
Scattering of electromagnetic waves by subwavelength objects is accompanied by the excitation of ele...
Recent progress in metaoptics driven by Mie resonances of high-index dielectric nanoparticles provid...
Metamaterials are artificial electromagnetic media that are structured on the subwavelength scale. S...
We demonstrate that Mie resonances can play a crucial role in all-dielectric meta-optics enhancing m...
Rapid progress in the fields of plasmonics and metamaterials is driven by their ability to enhance n...
All-dielectric subwavelength structures made of high-refractive-index materials combine a unique set...
Control of light by an external magnetic field is one of the important methods for modulation of its...
We reveal that strong near-field coupling effects can be observed for dissimilar Mie-resonant dielec...
Nanoparticles made of High Refractive Index dielectric materials have been proposed as an alternativ...
We demonstrate both experimentally and numerically multifold enhancement of magneto-optical effects ...
Research in nanophotonics is yielding advances towards grand challenges that have not previously bee...
Metamaterials are artificial materials that consist of subwavelength unit cells (meta-atoms). They a...
An enhanced emission of high quantum yield molecules coupled to dielectric metasurfaces formed by pe...