Neuromorphic computing is a promising alternative to conventional computing systems as it could enable parallel computation and adaptive learning process. However, the development of energy efficient neuromorphic hardware systems has been hindered by the limited performance of analog synaptic devices. Here, we demonstrate the analog conductance modulation behavior in the ferroelectric thin-film transistors (FeTFT) that have the nanoscale ferroelectric material and oxide semiconductors. Accurate control of polarization changes in the nanoscale ferroelectric layer induces conductance modulation to demonstrate linear potentiation and depression characteristics of FeTFTs. Our devices show potentiation and depression properties, including high l...
DoctorAs the production of information increases, there is an increasing demand for a high-performan...
Ferroelectric materials have been intensively investigated for high-performance nonvolatile memory d...
In recent years, the emergence of numerous applications of artificial intelligence (AI) has sparked ...
Neuromorphic computing is a promising alternative to conventional computing systems as it could enab...
Neuromorphic computing that mimics the biological brain has been demonstrated as a next-generation c...
A ferroelectric thin‐film transistor (FeTFT)‐based synaptic device with an indium–gallium–zinc oxide...
In this paper, artificial synapses based on four terminal ferroelectric Schottky barrier field effec...
An artificial synaptic element consisting of a three terminal Ferroelectric Field-Effect Transistor ...
Ferroelectric materials with a modulable polarization extent hold promise for exploring voltage-driv...
Ferroelectric materials with a modulable polarization extent hold promise for exploring voltage-driv...
Artificial synapses based on ferroelectric Schottky barrier field-effect transistors (FE-SBFETs) are...
Due to the voltage driven switching at low voltages combined with nonvolatility of the achieved pola...
Neuron is the basic computing unit in brain-inspired neural networks. Although a multitude of excell...
Neuromorphic computing is a computing architecture that mimics biological neural systems. Successful...
A compact nanoscale device emulating the functionality of biological synapses is an essential elemen...
DoctorAs the production of information increases, there is an increasing demand for a high-performan...
Ferroelectric materials have been intensively investigated for high-performance nonvolatile memory d...
In recent years, the emergence of numerous applications of artificial intelligence (AI) has sparked ...
Neuromorphic computing is a promising alternative to conventional computing systems as it could enab...
Neuromorphic computing that mimics the biological brain has been demonstrated as a next-generation c...
A ferroelectric thin‐film transistor (FeTFT)‐based synaptic device with an indium–gallium–zinc oxide...
In this paper, artificial synapses based on four terminal ferroelectric Schottky barrier field effec...
An artificial synaptic element consisting of a three terminal Ferroelectric Field-Effect Transistor ...
Ferroelectric materials with a modulable polarization extent hold promise for exploring voltage-driv...
Ferroelectric materials with a modulable polarization extent hold promise for exploring voltage-driv...
Artificial synapses based on ferroelectric Schottky barrier field-effect transistors (FE-SBFETs) are...
Due to the voltage driven switching at low voltages combined with nonvolatility of the achieved pola...
Neuron is the basic computing unit in brain-inspired neural networks. Although a multitude of excell...
Neuromorphic computing is a computing architecture that mimics biological neural systems. Successful...
A compact nanoscale device emulating the functionality of biological synapses is an essential elemen...
DoctorAs the production of information increases, there is an increasing demand for a high-performan...
Ferroelectric materials have been intensively investigated for high-performance nonvolatile memory d...
In recent years, the emergence of numerous applications of artificial intelligence (AI) has sparked ...