Here, a new platform for a realization of novel nonvolatile optical switching devices was proposed that takes an advantage of high field confinement provided by plasmonics and multi-state programming capabilities of chalcogenide phase change materials. A high reduction in the overall energy consumption consists of a high field enhancement provided by plasmonic that allow to lower the switching energies and implementation of phase change materials that allow to operate under a zero-static power consumption. A combination of plasmonics and phase change materials provide additionally an essential improvement in terms of a switching time, attenuation contrast and possibility to perform a phase shift with the wide bandgap phase change materials....
The material technology behind rewritable optical disks and the latest generation of electronic memo...
We show that the phase-change technology behind rewritable optical disks and the latest generation o...
Modern-day computers rely on electrical signaling for the processing and storage of data, which is b...
With a rapidly growing amount of data generated and processed, a search for more efficient component...
Programmable photonic integrated circuits (PICs) are the foundation of on-chip optical technologies,...
The chalcogenides are a unique material family, variously offering high-index dielectric, plasmonic,...
Chalcogenide semiconductor alloys offer a uniquely functional and compositionally-controllable mater...
Phase change materials (PCM) provide a unique property combination. Upon the transformation from th...
Chalcogenide phase-change media offer a uniquely functional and compositionally-controllable materia...
The phase change technology behind rewritable optical disks and the latest electronic memory storage...
Phase change materials (PCM) provide a unique property combination. Upon the transformation from th...
Reconfigurable plasmonics constitutes an exciting and challenging new horizon in nanophotonics. This...
For the first time, we demonstrate a non-volatile bi-directional all-optical switching in a phase-ch...
The phase-change technology behind rewritable optical disks and the latest generation of electronic ...
Phase-change materials (PCMs) provide a unique combination of properties. On transformation from the...
The material technology behind rewritable optical disks and the latest generation of electronic memo...
We show that the phase-change technology behind rewritable optical disks and the latest generation o...
Modern-day computers rely on electrical signaling for the processing and storage of data, which is b...
With a rapidly growing amount of data generated and processed, a search for more efficient component...
Programmable photonic integrated circuits (PICs) are the foundation of on-chip optical technologies,...
The chalcogenides are a unique material family, variously offering high-index dielectric, plasmonic,...
Chalcogenide semiconductor alloys offer a uniquely functional and compositionally-controllable mater...
Phase change materials (PCM) provide a unique property combination. Upon the transformation from th...
Chalcogenide phase-change media offer a uniquely functional and compositionally-controllable materia...
The phase change technology behind rewritable optical disks and the latest electronic memory storage...
Phase change materials (PCM) provide a unique property combination. Upon the transformation from th...
Reconfigurable plasmonics constitutes an exciting and challenging new horizon in nanophotonics. This...
For the first time, we demonstrate a non-volatile bi-directional all-optical switching in a phase-ch...
The phase-change technology behind rewritable optical disks and the latest generation of electronic ...
Phase-change materials (PCMs) provide a unique combination of properties. On transformation from the...
The material technology behind rewritable optical disks and the latest generation of electronic memo...
We show that the phase-change technology behind rewritable optical disks and the latest generation o...
Modern-day computers rely on electrical signaling for the processing and storage of data, which is b...