Activated by action potentials and Ca2+ ion migration, neurotransmitters in biological synapses are released from vesicles at the presynaptic membrane to the cleft and bonded to receptors on the postsynaptic membrane. The bonded neurotransmitters modify the electrochemical properties of the postsynaptic membrane and, thereby, the synaptic plasticity, which forms the basis for learning, memory, emotion, cognition, and consciousness. Here, the oxygen vacancy transport in Au/SrTiO3 (STO)/La0.67Sr0.33MnO3 (LSMO) tunnel junctions is exploited to mimic neurotransmission processes in an artificial ionic electronic device. Using voltage pulses of varying number, amplitude, and polarity, it is demonstrated that reversible oxygen vacancy migration ac...
In neuroscience, signal processing, memory and learning function are established in the brain by mod...
The development of neuromorphic architectures depends on the engineering of new functional materials...
International audienceInterface-type oxide-based valence-change memories (VCMs) with analog switchin...
Activated by action potentials and Ca2+ ion migration, neurotransmitters in biological synapses are ...
International audienceThe brain has the ability to learn and evaluate as it receives and registers i...
Non-volatile memristors are promising for future hardware-based neurocomputation application because...
Parallel information processing, energy efficiency and unsupervised learning make the human brain a ...
Memristive devices have been widely employed to emulate biological synaptic behavior. In these cases...
Thomas A, Niehörster S, Fabretti S, et al. Tunnel junction based memristors as artificial synapses. ...
Nano-sized two-terminal memristor exhibiting volatile threshold switching (TS) is a promising candid...
Recently, advanced designs and materials emerge to study biologically inspired neuromorphic circuit,...
Energy efficiency, parallel information processing, and unsupervised learning make the human brain a...
In neuroscience, signal processing, memory and learning function are established in the brain by mod...
The development of neuromorphic architectures depends on the engineering of new functional materials...
International audienceInterface-type oxide-based valence-change memories (VCMs) with analog switchin...
Activated by action potentials and Ca2+ ion migration, neurotransmitters in biological synapses are ...
International audienceThe brain has the ability to learn and evaluate as it receives and registers i...
Non-volatile memristors are promising for future hardware-based neurocomputation application because...
Parallel information processing, energy efficiency and unsupervised learning make the human brain a ...
Memristive devices have been widely employed to emulate biological synaptic behavior. In these cases...
Thomas A, Niehörster S, Fabretti S, et al. Tunnel junction based memristors as artificial synapses. ...
Nano-sized two-terminal memristor exhibiting volatile threshold switching (TS) is a promising candid...
Recently, advanced designs and materials emerge to study biologically inspired neuromorphic circuit,...
Energy efficiency, parallel information processing, and unsupervised learning make the human brain a...
In neuroscience, signal processing, memory and learning function are established in the brain by mod...
The development of neuromorphic architectures depends on the engineering of new functional materials...
International audienceInterface-type oxide-based valence-change memories (VCMs) with analog switchin...