Metadevices based on dielectric nanostructured surfaces with both electric and magnetic Mie-type resonances have resulted in the best efficiency to date for functional flat optics with only one disadvantage: a narrow operational bandwidth. Here we experimentally demonstrate broadband transparent all-dielectric metasurfaces for highly efficient polarization manipulation. We utilize the generalized Huygens principle, with a superposition of the scattering contributions from several electric and magnetic multipolar modes of the constituent meta-atoms, to achieve destructive interference in reflection over a large spectral bandwidth. By employing this novel concept, we demonstrate reflectionless (∼90% transmission) half-wave plates, quarter-wav...
Magnetic field control of light is among the most intriguing methods for modulation of light intensi...
Metasurfaces are ultra-thin patterned structures that emerged recently as planar metadevices [1] cap...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
Metadevices based on dielectric nanostructured surfaces with both electric and magnetic Mie-type res...
We employ the generalized Huygens principle to design and fabricate highly transparent dielectric me...
We experimentally demonstrate broadband transparent all-dielectric Huygens' metasurfaces for polariz...
Electromagnetically induced transparency is a type of quantum interference that induces near-zero re...
Reducing fabrication difficulties while maintaining structural complexities and functionalities is o...
Optical metasurfaces have developed as a breakthrough concept for advanced wave-front engineering en...
Thesis (Master's)--University of Washington, 2017-06Metasurfaces, the 2D analogue of bulk metamateri...
Recently reported metamaterial analogues of electromagnetically induced transparency enable a unique...
Metasurfaces built of high refractive dielectric nanostructures could play a key role in controlling...
© 2018 Author(s). Reducing fabrication difficulties while maintaining structural complexities and fu...
Metasurfaces, composed of specifically designed subwavelength units in a two-dimensional plane, offe...
Plasmonic metamaterials (MMs) are based on light coupling to metal free electrons, which inherently ...
Magnetic field control of light is among the most intriguing methods for modulation of light intensi...
Metasurfaces are ultra-thin patterned structures that emerged recently as planar metadevices [1] cap...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
Metadevices based on dielectric nanostructured surfaces with both electric and magnetic Mie-type res...
We employ the generalized Huygens principle to design and fabricate highly transparent dielectric me...
We experimentally demonstrate broadband transparent all-dielectric Huygens' metasurfaces for polariz...
Electromagnetically induced transparency is a type of quantum interference that induces near-zero re...
Reducing fabrication difficulties while maintaining structural complexities and functionalities is o...
Optical metasurfaces have developed as a breakthrough concept for advanced wave-front engineering en...
Thesis (Master's)--University of Washington, 2017-06Metasurfaces, the 2D analogue of bulk metamateri...
Recently reported metamaterial analogues of electromagnetically induced transparency enable a unique...
Metasurfaces built of high refractive dielectric nanostructures could play a key role in controlling...
© 2018 Author(s). Reducing fabrication difficulties while maintaining structural complexities and fu...
Metasurfaces, composed of specifically designed subwavelength units in a two-dimensional plane, offe...
Plasmonic metamaterials (MMs) are based on light coupling to metal free electrons, which inherently ...
Magnetic field control of light is among the most intriguing methods for modulation of light intensi...
Metasurfaces are ultra-thin patterned structures that emerged recently as planar metadevices [1] cap...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...