International audienceMemristive devices are an emerging new type of devices operating at the scale of a few or even single atoms. They are currently used as storage elements and are investigated for performing in-memory and neuromorphic computing. Amongst these devices, Ag/amorphous-SiO x /Pt memristors are among the most studied systems, with the electrically induced filament growth and dynamics being thoroughly investigated both theoretically and experimentally. In this paper, we report the observation of a novel feature in these devices: The appearance of new photoluminescent centers in SiO x upon memristive switching, and photon emission correlated with the conductance changes. This observation might pave the way towards an intrinsical...
Photonic computing and neuromorphic computing are attracting tremendous interests in breaking the me...
The investigation of new memory schemes, neural networks, computer systems and many other improved e...
We report the optical control of localized charge on positioned quantum dots in an electro-photo-sen...
Memristive devices are an emerging new type of devices operating at the scale of a few or even singl...
International audienceA nanoscale dielectric gap clamped between two metal electrodes may undergo a ...
A nanoscale dielectric gap clamped between two metal electrodes may undergo a large resistance chang...
Neuromorphic computing (NC) is a new generation of artificial intelligence. Memristors are promising...
The optical control of atomic relocations in a metallic quantum point contact is of great interest b...
One of the most promising contenders for ultralow-energy electronic devices are memristive memories,...
[eng] Resistive switching devices have been a topic of great interest in the last two decades, as th...
In this thesis, an unconventional cAFM approach was developed to enhance basic research on nanoscale...
Optical memristive switches are particularly interesting for the use as latching optical switches, a...
We present optically and electrically tunable conductance modifications of a site-controlled quantum...
Memristive devices have been widely employed to emulate biological synaptic behavior. In these cases...
With the ever-increasing demand for low power electronics, neuromorphic computing has garnered huge ...
Photonic computing and neuromorphic computing are attracting tremendous interests in breaking the me...
The investigation of new memory schemes, neural networks, computer systems and many other improved e...
We report the optical control of localized charge on positioned quantum dots in an electro-photo-sen...
Memristive devices are an emerging new type of devices operating at the scale of a few or even singl...
International audienceA nanoscale dielectric gap clamped between two metal electrodes may undergo a ...
A nanoscale dielectric gap clamped between two metal electrodes may undergo a large resistance chang...
Neuromorphic computing (NC) is a new generation of artificial intelligence. Memristors are promising...
The optical control of atomic relocations in a metallic quantum point contact is of great interest b...
One of the most promising contenders for ultralow-energy electronic devices are memristive memories,...
[eng] Resistive switching devices have been a topic of great interest in the last two decades, as th...
In this thesis, an unconventional cAFM approach was developed to enhance basic research on nanoscale...
Optical memristive switches are particularly interesting for the use as latching optical switches, a...
We present optically and electrically tunable conductance modifications of a site-controlled quantum...
Memristive devices have been widely employed to emulate biological synaptic behavior. In these cases...
With the ever-increasing demand for low power electronics, neuromorphic computing has garnered huge ...
Photonic computing and neuromorphic computing are attracting tremendous interests in breaking the me...
The investigation of new memory schemes, neural networks, computer systems and many other improved e...
We report the optical control of localized charge on positioned quantum dots in an electro-photo-sen...