When the feature size of photonic structures becomes comparable or even smaller than the wavelength of light, the fabrication imperfections inevitably introduce disorder that may eliminate many functionalities of subwavelength photonic devices. Here we suggest a novel concept to achieve a robust band gap which can endure disorder beyond 30% as a result of the transition from photonic crystals to Mie-resonant metamaterials. By utilizing Mie-resonant metamaterials with high refractive index, we demonstrate photonic waveguides and cavities with strong robustness to position disorder, thus providing a novel approach to the band-gap-based nanophotonic devices with new properties and functionalities
We demonstrate that hyperuniform disordered structures support electromagnetic states with very diff...
Disorder offers rich possibilities for manipulating the phase and intensity of light and designing p...
Disorder offers rich possibilities for manipulating the phase and intensity of light and designing p...
Modern nanotechnology provides tools for realizing unique photonic structures with the feature size ...
When the feature size of photonic structures becomes comparable or even smaller than the wavelength ...
When the feature size of photonic structures becomes comparable or even smaller than the wavelength ...
Disordered photonic nanostructures have attracted tremendous interest in the past three decades, not...
Photonic metamaterials made of graded photonic crystals operating near the bandgap frequency region ...
Photonic metamaterials made of graded photonic crystals operating near the bandgap frequency region ...
Photonic metamaterials made of graded photonic crystals operating near the bandgap frequency region ...
Photonic metamaterials made of graded photonic crystals operating near the bandgap frequency region ...
In this thesis we investigate designer disordered complex media for photonics and phononics applicat...
In this thesis we investigate designer disordered complex media for photonics and phononics applicat...
Disordered biostructures are ubiquitous in nature, usually generating white or black colours due to ...
Most optical metamaterials fabricated and studied to date employ metallic components resulting in si...
We demonstrate that hyperuniform disordered structures support electromagnetic states with very diff...
Disorder offers rich possibilities for manipulating the phase and intensity of light and designing p...
Disorder offers rich possibilities for manipulating the phase and intensity of light and designing p...
Modern nanotechnology provides tools for realizing unique photonic structures with the feature size ...
When the feature size of photonic structures becomes comparable or even smaller than the wavelength ...
When the feature size of photonic structures becomes comparable or even smaller than the wavelength ...
Disordered photonic nanostructures have attracted tremendous interest in the past three decades, not...
Photonic metamaterials made of graded photonic crystals operating near the bandgap frequency region ...
Photonic metamaterials made of graded photonic crystals operating near the bandgap frequency region ...
Photonic metamaterials made of graded photonic crystals operating near the bandgap frequency region ...
Photonic metamaterials made of graded photonic crystals operating near the bandgap frequency region ...
In this thesis we investigate designer disordered complex media for photonics and phononics applicat...
In this thesis we investigate designer disordered complex media for photonics and phononics applicat...
Disordered biostructures are ubiquitous in nature, usually generating white or black colours due to ...
Most optical metamaterials fabricated and studied to date employ metallic components resulting in si...
We demonstrate that hyperuniform disordered structures support electromagnetic states with very diff...
Disorder offers rich possibilities for manipulating the phase and intensity of light and designing p...
Disorder offers rich possibilities for manipulating the phase and intensity of light and designing p...