We report on the development of TiO<sub>x</sub>-based memristive devices for bio-inspired neuromorphic systems. In particular, capacitor like structures of Al/AlO<sub>x</sub>/TiO<sub>x</sub>/Al with, respectively 20 nm and 50 nm thick TiO<sub>x</sub>-layers were fabricated and analyzed in terms of their use in neural network circuits. Therefore, an equivalent circuit model is presented which mimics the observed device properties on a qualitative level and relies on mobile oxygen ions by taking electronic transport through local conducting filaments and hopping between TiO<sub>x</sub> defect states into account. The model also comprises back diffusion of oxygen ions and allows for a realistic description of the experimental recorded device c...
International audienceNeuromorphic computing has gained important attention since it is an efficient...
A neuromorphic chip that combines CMOS analog spiking neurons and memristive synapses offers a promi...
Many efforts have been spent in the last decade for the development of nanoscale synaptic devices in...
Memristive devices are among the most emerging electronic elements to realize artificial synapses fo...
In recent years, biologically inspired systems, which emulate the nervous system of living beings, a...
Memristor, the fourth passive circuit element, has attracted increased attention from various areas ...
The use of interface-based resistive switching devices for neuromorphic computing is investigated. I...
Neuromorphic computation based on resistive switching devices represents a relevant hardware alterna...
Neuromorphic computing describes the use of electrical circuits to mimic biological architecture pre...
Synaptic plasticity plays a crucial role in allowing neural networks to learn and adapt to various i...
Synaptic plasticity plays a crucial role in allowing neural networks to learn and adapt to various i...
Al/TiO2/Au memory junctions grown by reactive sputtering were fabricated and characterized. Usual hy...
Memristive devices are novel electronic devices, which resistance can be tuned by an external voltag...
This paper presents a neuromorphic system for visual pattern recognition realized in hardware. A new...
Synaptic devices with bipolar analog resistive switching behavior are the building blocks for memris...
International audienceNeuromorphic computing has gained important attention since it is an efficient...
A neuromorphic chip that combines CMOS analog spiking neurons and memristive synapses offers a promi...
Many efforts have been spent in the last decade for the development of nanoscale synaptic devices in...
Memristive devices are among the most emerging electronic elements to realize artificial synapses fo...
In recent years, biologically inspired systems, which emulate the nervous system of living beings, a...
Memristor, the fourth passive circuit element, has attracted increased attention from various areas ...
The use of interface-based resistive switching devices for neuromorphic computing is investigated. I...
Neuromorphic computation based on resistive switching devices represents a relevant hardware alterna...
Neuromorphic computing describes the use of electrical circuits to mimic biological architecture pre...
Synaptic plasticity plays a crucial role in allowing neural networks to learn and adapt to various i...
Synaptic plasticity plays a crucial role in allowing neural networks to learn and adapt to various i...
Al/TiO2/Au memory junctions grown by reactive sputtering were fabricated and characterized. Usual hy...
Memristive devices are novel electronic devices, which resistance can be tuned by an external voltag...
This paper presents a neuromorphic system for visual pattern recognition realized in hardware. A new...
Synaptic devices with bipolar analog resistive switching behavior are the building blocks for memris...
International audienceNeuromorphic computing has gained important attention since it is an efficient...
A neuromorphic chip that combines CMOS analog spiking neurons and memristive synapses offers a promi...
Many efforts have been spent in the last decade for the development of nanoscale synaptic devices in...