The exponential growth of telecommunications bandwidth will require next generation optical networks, where multiple spatial information channels will be transmitted in parallel. To realise the full potential of parallel optical data channels, fast and scalable multichannel solutions for processing of optical data are of paramount importance. Established solutions based on the nonlinear wave interaction in photorefractive materials are slow. Here we experimentally demonstrate all-optical logical operations between pairs of simulated spatially-multiplexed information channels using the coherent interaction of light with light on a plasmonic metamaterial. The approach is suitable for fiber implementation and - in principle - operates with dif...
Recently, coherent control of the optical response of thin films in standing waves has attracted con...
Recently, coherent control of the optical response of thin films in standing waves has attracted con...
The development of coherent optical networks and processing are catalysing increasing attention as s...
The exponential growth of telecommunications bandwidth will require next generation optical networks...
The exponential growth of telecommunications bandwidth will require next generation optical networks...
The exponential growth of telecommunications bandwidth will require next generation optical networks...
This Thesis merges the physics of metamaterials with optical fibre technology in order to demonstrat...
Although vast amounts of information are conveyed by photons in optical fibers, the majority of data...
We demonstrate spatial and temporal control over metamaterial properties using coherent interactions...
Exponentially growing bandwidth requirements of our information society introduce major capacity and...
Since metamaterials have enabled the design of almost arbitrary landscapes of static optical propert...
The ability to control the wavefront of light is fundamental to focusing and redistribution of light...
The ability to control the wavefront of light is fundamental to focusing and redistribution of light...
Recently, coherent control of the optical response of thin films in standing waves has attracted con...
Research data for Papaioannou, Maria, Plum, Eric, Valente, Joao, Rogers, Edward and Zheludev, Ni...
Recently, coherent control of the optical response of thin films in standing waves has attracted con...
Recently, coherent control of the optical response of thin films in standing waves has attracted con...
The development of coherent optical networks and processing are catalysing increasing attention as s...
The exponential growth of telecommunications bandwidth will require next generation optical networks...
The exponential growth of telecommunications bandwidth will require next generation optical networks...
The exponential growth of telecommunications bandwidth will require next generation optical networks...
This Thesis merges the physics of metamaterials with optical fibre technology in order to demonstrat...
Although vast amounts of information are conveyed by photons in optical fibers, the majority of data...
We demonstrate spatial and temporal control over metamaterial properties using coherent interactions...
Exponentially growing bandwidth requirements of our information society introduce major capacity and...
Since metamaterials have enabled the design of almost arbitrary landscapes of static optical propert...
The ability to control the wavefront of light is fundamental to focusing and redistribution of light...
The ability to control the wavefront of light is fundamental to focusing and redistribution of light...
Recently, coherent control of the optical response of thin films in standing waves has attracted con...
Research data for Papaioannou, Maria, Plum, Eric, Valente, Joao, Rogers, Edward and Zheludev, Ni...
Recently, coherent control of the optical response of thin films in standing waves has attracted con...
Recently, coherent control of the optical response of thin films in standing waves has attracted con...
The development of coherent optical networks and processing are catalysing increasing attention as s...