#Memristive

2024-05-14

It's always special to collaborate with my previous institute Helmholtz-Zentrum Berlin! In this very interesting work Catherine Dubourdieu and Rong Wu report electrochemical metallization #ResistiveSwitching in polycrystalline YMnO3-based #memristive devices using Al as an active electrode. In the #cover we represented the filament formation, which happens at the grain boundaries between two different phases of YMnO3, following the migration of Al3+ cations from the electrode.

✏ full paper at onlinelibrary.wiley.com/toc/26

#SciArt #SciComm

the image represent the space at the boundary between two grains of different perovskite material. In the grain boundary space Al3+ atoms migrate and form a filament
2023-03-07

Is the #ReRAM community already active here in the #fediverse?🧐

Just want to share our latest results about spatio-temporal correlations due to thermal effects 🔥 that are expected to be observed in #memristive crossbar arrays. This effect could perhaps be exploited for future #neuromorphic computing applications.🧠🖥️

But take a look for yourself:
doi.org/10.1002/adfm.202213943

(The work is part of the @bmbf_bund@social.bund.de project #NEUROTEC at @fzj 👍)

It is a 1x3 memristive crossbar array shown. At each top electrode a voltage pulse is applied but with a different timing. One can see how the heat of a memristive device influence the temperature in an adjacent cell.
Tero Keski-Valkamatero@rukii.net
2023-01-05

#Memristors Run #AI Tasks at 1/800th Power - #IEEESpectrum

"#Memristive devices that mimic #neuron-connecting #synapses could serve as the hardware for #NeuralNetworks that copy the way the #brain learns. Now two new #studies may help solve key problems these components face not just with yields and reliability, but with finding applications beyond #neural nets."

spectrum.ieee.org/memristor-de

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