The synaptic activities in the nervous system is the basis of memory and learning behaviors, and the concept of biological synapse has also spurred the development of neuromorphic engineering. In recent years, the hardware implementation of the biological synapse has been achieved based on CMOS circuits, resistive switching memory, and field effect transistors with ionic dielectrics. However, the artificial synapse with regulatable plasticity has never been realized of the device level. Here, an artificial dynamic synapse based on twisted bilayer graphene is demonstrated with tunable plasticity. Due to the ambipolar conductance of graphene, both behaviors of the excitatory synapse and the inhibitory synapse could be realized in a single dev...
CMOS-based computing systems that employ the von Neumann architecture are relatively limited when it...
Nonvolatile, flexible artificial synapses that can be used for brain-inspired computing are highly d...
We suggest a 'universal' electrical circuit for the realization of an artificial synapse tha...
Designing and implementing artificial systems that can be interfaced with the human brain or that ca...
Design and implementation of artificial neuromorphic systems able to provide brain akin computation ...
Brain-inspired neuromorphic computing which consist neurons and synapses, with an ability to perform...
Brain-inspired neuromorphic computing is a revolutionary technology to create an intelligent and ene...
The development of energy-efficient artificial synapses capable of manifoldly tuning synaptic activi...
2D cultures are useful platforms allowing studies of the fundamental mechanisms governing neuron and...
Memristors with rich interior dynamics of ion migration are promising for mimicking various biologic...
A brain-inspired neuromorphic system is a promising computing concept that processes information at ...
The human brain is a natural high-performance computing systemwith outstanding properties, e.g., ult...
With the ever-increasing demand for low power electronics, neuromorphic computing has garnered huge ...
Neuromorphic computing (NC), which emulates neural activities of the human brain, is considered for...
Artificial synapses, with synaptic plasticity, are the key components of constructing the neuromorph...
CMOS-based computing systems that employ the von Neumann architecture are relatively limited when it...
Nonvolatile, flexible artificial synapses that can be used for brain-inspired computing are highly d...
We suggest a 'universal' electrical circuit for the realization of an artificial synapse tha...
Designing and implementing artificial systems that can be interfaced with the human brain or that ca...
Design and implementation of artificial neuromorphic systems able to provide brain akin computation ...
Brain-inspired neuromorphic computing which consist neurons and synapses, with an ability to perform...
Brain-inspired neuromorphic computing is a revolutionary technology to create an intelligent and ene...
The development of energy-efficient artificial synapses capable of manifoldly tuning synaptic activi...
2D cultures are useful platforms allowing studies of the fundamental mechanisms governing neuron and...
Memristors with rich interior dynamics of ion migration are promising for mimicking various biologic...
A brain-inspired neuromorphic system is a promising computing concept that processes information at ...
The human brain is a natural high-performance computing systemwith outstanding properties, e.g., ult...
With the ever-increasing demand for low power electronics, neuromorphic computing has garnered huge ...
Neuromorphic computing (NC), which emulates neural activities of the human brain, is considered for...
Artificial synapses, with synaptic plasticity, are the key components of constructing the neuromorph...
CMOS-based computing systems that employ the von Neumann architecture are relatively limited when it...
Nonvolatile, flexible artificial synapses that can be used for brain-inspired computing are highly d...
We suggest a 'universal' electrical circuit for the realization of an artificial synapse tha...