Metasurfaces allow for the spatiotemporal variation of amplitude, phase, and polarization of optical wavefronts. Implementation of active tunability of metasurfaces promises compact flat optics capable of reconfigurable wavefront shaping. Phase-change materials (PCMs) are a prominent material class enabling reconfigurable metasurfaces due to their large refractive index change upon structural transition. However, commonly employed laser-induced switching of PCMs limits the achievable feature sizes and restricts device miniaturization. Thermal scanning-probe-induced local switching of the PCM germanium telluride is proposed to realize near-infrared metasurfaces with feature sizes far below what is achievable with diffraction-limited optical ...
Recently, metasurfaces have been investigated and exploited for various applications in the THz regi...
Material characteristics and crystallinity of germanium antimony telluride (GST) using various desig...
A reconfigurable metasurface made of Ge2Sb2Te5 phase-change material was experimentally demonstrated...
Metasurfaces allow for the spatiotemporal variation of amplitude, phase, and polarization of optical...
Recently, metasurfaces based on phase-change materials (PCMs) have attracted increasing attention du...
Integration of phase-change materials (PCMs) into electrical/optical circuits has initiated extensiv...
This is the author accepted manuscript. The final version is available from IEEE via the DOI in this...
Active optical metasurfaces with dynamic switchable, tunable, and reconfigurable optical functionali...
Reconfigurable photonics has been at the forefront of modern optics research, especially as optics a...
Integration of phase-change materials (PCMs) into electrical/optical circuits has initiated extensiv...
We harness non-volatile, amorphous-crystalline transitions in the chalcogenide phase-change medium g...
We harness non-volatile, amorphous-crystalline transitions in the chalcogenide phase-change medium g...
© 2020 SPIE. All rights reserved. Optical metasurfaces, planar sub-wavelength nano-antenna arrays wi...
Optical metasurface is a combination of manufactured periodic patterns of many artificial nanostruct...
We harness non-volatile, amorphous-crystalline transitions in the chalcogenide phase-change medium g...
Recently, metasurfaces have been investigated and exploited for various applications in the THz regi...
Material characteristics and crystallinity of germanium antimony telluride (GST) using various desig...
A reconfigurable metasurface made of Ge2Sb2Te5 phase-change material was experimentally demonstrated...
Metasurfaces allow for the spatiotemporal variation of amplitude, phase, and polarization of optical...
Recently, metasurfaces based on phase-change materials (PCMs) have attracted increasing attention du...
Integration of phase-change materials (PCMs) into electrical/optical circuits has initiated extensiv...
This is the author accepted manuscript. The final version is available from IEEE via the DOI in this...
Active optical metasurfaces with dynamic switchable, tunable, and reconfigurable optical functionali...
Reconfigurable photonics has been at the forefront of modern optics research, especially as optics a...
Integration of phase-change materials (PCMs) into electrical/optical circuits has initiated extensiv...
We harness non-volatile, amorphous-crystalline transitions in the chalcogenide phase-change medium g...
We harness non-volatile, amorphous-crystalline transitions in the chalcogenide phase-change medium g...
© 2020 SPIE. All rights reserved. Optical metasurfaces, planar sub-wavelength nano-antenna arrays wi...
Optical metasurface is a combination of manufactured periodic patterns of many artificial nanostruct...
We harness non-volatile, amorphous-crystalline transitions in the chalcogenide phase-change medium g...
Recently, metasurfaces have been investigated and exploited for various applications in the THz regi...
Material characteristics and crystallinity of germanium antimony telluride (GST) using various desig...
A reconfigurable metasurface made of Ge2Sb2Te5 phase-change material was experimentally demonstrated...