The extensive progress in nanofabrication techniques enabled innovative methods for molding light at the nanoscale. Subwavelength structured optical elements and, in general, metasurfaces and metamaterials achieved promising results in several research areas, such as holography, microscopy, sensing and nonlinear optics. Still, a demanding challenge is represented by the development of innovative devices with reconfigurable optical properties. Here, we review recent achievements in the field of tunable metasurface. After a brief general introduction about metasurfaces, we will discuss two different mechanisms to implement tunable properties of optical elements at the nanoscale. In particular, we will first focus on phase-transition materials...
Achieving an efficient spectral tuning in liquid-crystal (LC)-loaded active photonic metamaterials h...
We numerically demonstrate output tuning in vanadium dioxide (VO2) metasurfaces at 1550 nm, which is...
Boston, Massachusetts, November 29-December 4, 2015; http://www.mrs.org/fall-2015-program-hh/Optical...
The extensive progress in nanofabrication techniques enabled innovative methods for molding light at...
In the field of nanophotonics, metasurfaces have come to the forefront in real-world applications, o...
Metasurfaces are ultrathin nanostructured surfaces that can allow arbitrary manipulation of light. I...
With their ultrathin characteristics as well as the powerful and flexible capabilities of wavefront ...
In nanooptics, the field of metamaterials (MMs) is emerging. Its focus lies on the e ective optical ...
Research in nanophotonic materials and design is yielding advances that are opening conceptually new...
We report a dynamically tunable reflectarray metasurface that continuously modulates the phase of re...
A key recent advance in nanophotonics field has been the emergence of tunable, switchable and reconf...
Dynamically reconfigurable nanoscale tuning of visible light properties is one of the ultimate goals...
Optical metasurfaces are thin-layer subwavelength-patterned structures that interact strongly with l...
Optical metasurfaces are regular quasi-planar nanopatterns that can apply diverse spatial and spectr...
We review our recent studies on photonic metamaterials infiltrated with liquid crystals and show tha...
Achieving an efficient spectral tuning in liquid-crystal (LC)-loaded active photonic metamaterials h...
We numerically demonstrate output tuning in vanadium dioxide (VO2) metasurfaces at 1550 nm, which is...
Boston, Massachusetts, November 29-December 4, 2015; http://www.mrs.org/fall-2015-program-hh/Optical...
The extensive progress in nanofabrication techniques enabled innovative methods for molding light at...
In the field of nanophotonics, metasurfaces have come to the forefront in real-world applications, o...
Metasurfaces are ultrathin nanostructured surfaces that can allow arbitrary manipulation of light. I...
With their ultrathin characteristics as well as the powerful and flexible capabilities of wavefront ...
In nanooptics, the field of metamaterials (MMs) is emerging. Its focus lies on the e ective optical ...
Research in nanophotonic materials and design is yielding advances that are opening conceptually new...
We report a dynamically tunable reflectarray metasurface that continuously modulates the phase of re...
A key recent advance in nanophotonics field has been the emergence of tunable, switchable and reconf...
Dynamically reconfigurable nanoscale tuning of visible light properties is one of the ultimate goals...
Optical metasurfaces are thin-layer subwavelength-patterned structures that interact strongly with l...
Optical metasurfaces are regular quasi-planar nanopatterns that can apply diverse spatial and spectr...
We review our recent studies on photonic metamaterials infiltrated with liquid crystals and show tha...
Achieving an efficient spectral tuning in liquid-crystal (LC)-loaded active photonic metamaterials h...
We numerically demonstrate output tuning in vanadium dioxide (VO2) metasurfaces at 1550 nm, which is...
Boston, Massachusetts, November 29-December 4, 2015; http://www.mrs.org/fall-2015-program-hh/Optical...