Wide range synaptic weight modulation with a tunable drain current was demonstrated in thin-film transistors (TFTs) with a hafnium oxide (HfO2-x) gate insulator and an indium-zinc oxide (IZO) channel layer for application to artificial synapses in neuromorphic systems. The drain current in these TFTs was reduced significantly by four orders of magnitude on application of a negative gate bias, then could be restored to its original value by applying a positive bias. The reduced drain current under negative biasing is interpreted as being caused by voltage-driven oxygen ion migration from the HfO2-x gate insulator to the IZO channel, which reduces the oxygen vacancy concentration in the IZO channel. In addition to emulating the analog-type po...
Neuromorphic devices have been investigated extensively for technological breakthroughs that could e...
Recently, synaptic electronics are attracting increasing attention in neuromorphic engineering. Here...
Recently, neuromorphic devices have attracted great attentions in the field of brain-inspired neurom...
We report a variety of synaptic behaviors in a thin-film transistor (TFT) with a metal-oxide-semicon...
Artificial synaptic devices are the critical component for large-scale neuromorphic computing, which...
To utilize continuous ultralow intensity signals from oxide synaptic transistors as artificial synap...
Background: Artificial synaptic behaviors are necessary to investigate and implement since they are ...
Phosphorous-doped nanogranular SiO2 gated laterally coupled indium-zinc-oxide electric-double-layer ...
Recently, advanced designs and materials emerge to study biologically inspired neuromorphic circuit,...
Recent research and developments have suggested that there are numerous benefits in mimicking biolog...
Human brain has astonishing advantages such as tolerance to system faults, low power consumption, an...
Neuromorphic systems inspired by the brain have gained much popularity in the computing world for it...
As the basic and essential unit of neuromorphic computing systems, artificial synaptic devices have ...
Artificial synaptic thin film transistors (TFTs) capable of simultaneously manifesting signal transm...
Recently, synaptic electronics are attracting increasing attention in neuromorphic engineering. Here...
Neuromorphic devices have been investigated extensively for technological breakthroughs that could e...
Recently, synaptic electronics are attracting increasing attention in neuromorphic engineering. Here...
Recently, neuromorphic devices have attracted great attentions in the field of brain-inspired neurom...
We report a variety of synaptic behaviors in a thin-film transistor (TFT) with a metal-oxide-semicon...
Artificial synaptic devices are the critical component for large-scale neuromorphic computing, which...
To utilize continuous ultralow intensity signals from oxide synaptic transistors as artificial synap...
Background: Artificial synaptic behaviors are necessary to investigate and implement since they are ...
Phosphorous-doped nanogranular SiO2 gated laterally coupled indium-zinc-oxide electric-double-layer ...
Recently, advanced designs and materials emerge to study biologically inspired neuromorphic circuit,...
Recent research and developments have suggested that there are numerous benefits in mimicking biolog...
Human brain has astonishing advantages such as tolerance to system faults, low power consumption, an...
Neuromorphic systems inspired by the brain have gained much popularity in the computing world for it...
As the basic and essential unit of neuromorphic computing systems, artificial synaptic devices have ...
Artificial synaptic thin film transistors (TFTs) capable of simultaneously manifesting signal transm...
Recently, synaptic electronics are attracting increasing attention in neuromorphic engineering. Here...
Neuromorphic devices have been investigated extensively for technological breakthroughs that could e...
Recently, synaptic electronics are attracting increasing attention in neuromorphic engineering. Here...
Recently, neuromorphic devices have attracted great attentions in the field of brain-inspired neurom...