Ferroelectric materials with a modulable polarization extent hold promise for exploring voltage-driven neuromorphic hardware, in which direct current flow can be minimized. Utilizing a single active layer of an insulating ferroelectric polymer, we developed a voltage-mode ferroelectric synapse that can continuously and reversibly update its states. The device states are straightforwardly manifested in the form of variable output voltage, enabling large-scale direct cascading of multiple ferroelectric synapses to build a deep physical neural network. Such a neural network based on potential superposition rather than current flow is analogous to the biological counterpart driven by action potentials in the brain. A high accuracy of over 97% f...
In the brain, learning is achieved through the ability of synapses to reconfigure the strength by wh...
Ferroelectrics have been demonstrated as excellent building blocks for high‐performance nonvolatile ...
Neuromorphic computing (NC), which emulates neural activities of the human brain, is considered for...
Ferroelectric materials with a modulable polarization extent hold promise for exploring voltage-driv...
Neuromorphic computing is a promising alternative to conventional computing systems as it could enab...
Neuromorphic computing is a promising alternative to conventional computing systems as it could enab...
In this paper, artificial synapses based on four terminal ferroelectric Schottky barrier field effec...
In recent years, the emergence of numerous applications of artificial intelligence (AI) has sparked ...
International audienceThe last few decades have witnessed the rapid development of electronic comput...
International audienceThe last few decades have witnessed the rapid development of electronic comput...
International audienceThe last few decades have witnessed the rapid development of electronic comput...
International audienceThe last few decades have witnessed the rapid development of electronic comput...
In the brain, learning is achieved through the ability of synapses to reconfigure the strength by wh...
Parallel information processing, energy efficiency and unsupervised learning make the human brain a ...
An artificial synaptic element consisting of a three terminal Ferroelectric Field-Effect Transistor ...
In the brain, learning is achieved through the ability of synapses to reconfigure the strength by wh...
Ferroelectrics have been demonstrated as excellent building blocks for high‐performance nonvolatile ...
Neuromorphic computing (NC), which emulates neural activities of the human brain, is considered for...
Ferroelectric materials with a modulable polarization extent hold promise for exploring voltage-driv...
Neuromorphic computing is a promising alternative to conventional computing systems as it could enab...
Neuromorphic computing is a promising alternative to conventional computing systems as it could enab...
In this paper, artificial synapses based on four terminal ferroelectric Schottky barrier field effec...
In recent years, the emergence of numerous applications of artificial intelligence (AI) has sparked ...
International audienceThe last few decades have witnessed the rapid development of electronic comput...
International audienceThe last few decades have witnessed the rapid development of electronic comput...
International audienceThe last few decades have witnessed the rapid development of electronic comput...
International audienceThe last few decades have witnessed the rapid development of electronic comput...
In the brain, learning is achieved through the ability of synapses to reconfigure the strength by wh...
Parallel information processing, energy efficiency and unsupervised learning make the human brain a ...
An artificial synaptic element consisting of a three terminal Ferroelectric Field-Effect Transistor ...
In the brain, learning is achieved through the ability of synapses to reconfigure the strength by wh...
Ferroelectrics have been demonstrated as excellent building blocks for high‐performance nonvolatile ...
Neuromorphic computing (NC), which emulates neural activities of the human brain, is considered for...