Brain-inspired computing concepts like artificial neural networks have become promising alternatives to classical von Neumann computer architectures. Photonic neural networks target the realizations of neurons, network connections and potentially learning in photonic substrates. Here, we report the development of a nanophotonic hardware platform of fast and energy-efficient photonic neurons via arrays of high-quality vertical cavity surface emitting lasers (VCSELs). The developed 5 × 5 VCSEL arrays provide high optical injection locking efficiency through homogeneous fabrication combined with individual control over the laser wavelengths. Injection locking is crucial for the reliable processing of information in VCSEL-based photonic neurons...
Optical neural networks offer radically new avenues for ultrafast, energy-efficient hardware for mac...
We report on the activation, inhibition and propagation of controllable neuron-like spiking signals ...
We report experimentally on the electrically-controlled, tunable and repeatable neuron-like spiking ...
Brain-inspired computing concepts like artificial neural networks have become promising alternatives...
International audienceBrain-inspired computing concepts like artificial neural networks have become ...
Photonic realizations of neural network computing hardware are a promising approach to enable future...
International audienceOver the past decade, articial Neural Networks (NNs) have revolutionized co...
Photonic approaches emulating the powerful computational capabilities of the brain are receiving inc...
We report experimentally on high-speed, tuneable photonic synaptic architectures realized with Verti...
In this thesis we investigate the technology of Vertical Cavity Surface Emitting Lasers (VCSELs) as ...
In today’s data-driven world, the ability to process large data volumes is crucial. Key tasks, such ...
Electrically-controlled, tuneable and repeatable neuron-like spiking regimes are generated in an opt...
Vertical-Cavity Surface-Emitting Lasers (VCSELs) are highly promising devices for the construction o...
Biological retinal neuronal circuits are emulated using a system of connected 1550 nm Vertical-Cavit...
We report experimentally on VCSEL-based artificial optical spiking neurons with ultrafast spiking re...
Optical neural networks offer radically new avenues for ultrafast, energy-efficient hardware for mac...
We report on the activation, inhibition and propagation of controllable neuron-like spiking signals ...
We report experimentally on the electrically-controlled, tunable and repeatable neuron-like spiking ...
Brain-inspired computing concepts like artificial neural networks have become promising alternatives...
International audienceBrain-inspired computing concepts like artificial neural networks have become ...
Photonic realizations of neural network computing hardware are a promising approach to enable future...
International audienceOver the past decade, articial Neural Networks (NNs) have revolutionized co...
Photonic approaches emulating the powerful computational capabilities of the brain are receiving inc...
We report experimentally on high-speed, tuneable photonic synaptic architectures realized with Verti...
In this thesis we investigate the technology of Vertical Cavity Surface Emitting Lasers (VCSELs) as ...
In today’s data-driven world, the ability to process large data volumes is crucial. Key tasks, such ...
Electrically-controlled, tuneable and repeatable neuron-like spiking regimes are generated in an opt...
Vertical-Cavity Surface-Emitting Lasers (VCSELs) are highly promising devices for the construction o...
Biological retinal neuronal circuits are emulated using a system of connected 1550 nm Vertical-Cavit...
We report experimentally on VCSEL-based artificial optical spiking neurons with ultrafast spiking re...
Optical neural networks offer radically new avenues for ultrafast, energy-efficient hardware for mac...
We report on the activation, inhibition and propagation of controllable neuron-like spiking signals ...
We report experimentally on the electrically-controlled, tunable and repeatable neuron-like spiking ...