🍄‍🟫Mushrooms show Promise as Memory Chips for Future Computers.

Researchers from The Ohio State University recently discovered that common edible fungi, such as shiitake mushrooms, can be grown and trained to act as organic memristors, a type of data processor that can remember past electrical states.

https://dx.plos.org/10.1371/journal.pone.0328965

#fungal #electronics #mushrooms #organic #memristors #computing #science #engineer #media #nature #tech #news

#Memristors are electrical components with the ability to store a past state. Three unexpected materials can also be used as memristors.

Could Shiitake Mushrooms Power...
Memristor Materials: Exploring Unusual Sources

Shiitake mushrooms show surprising potential as eco-friendly memristors with unique properties.

IEEE Spectrum

Don't miss this seminar tomorrow, organized by INAM!

Dr. Sungjun Kim (Dongguk Univ.) presents: "Accurate In-Memory Computing and Memory Augmented Learning with Multi-Level Memristor Arrays."

#INAM #Memristors #InMemoryComputing #AIHardware

🚨 Just published in AI Advances
No Storm in the Simulation, No Ghost in the Machine
Why real consciousness can’t be uploaded, simulated, or scaled into existence.
Embodied cognition, analog dynamics, morphological computation.

https://ai.gopubby.com/no-storm-in-the-simulation-no-ghost-in-the-machine-318e250c22b2a

#AI #Consciousness #EmbodiedCognition #LLM #AGI #Neurotech #Memristors

Medium

Medium
Congratulations to Dilara Abdel for finishing her PhD! 🥳 Her thesis is titled "Modeling and simulation of vacancy-assisted charge transport in innovative semiconductor devices". For her defence she gave a talks on physics-informed #DeepONets, #pervovskites & #memristors.

#Memristors make versatile artificial synapses for neuromorphic #computing

https://physicsworld.com/a/memristors-make-versatile-artificial-synapses-for-neuromorphic-computing/

Simple heterojunction combines many functions in a single component

Memristors make versatile artificial synapses for neuromorphic computing – Physics World

Simple heterojunction combines many functions in a single component

Physics World

#DidYouKnow: #Memristors are an emerging high-density technology where the individual memristors can be used as #Storage or to perform #Computation.

The voltage applied across a memristor determines its behavior (storage vs. compute), which enables a configurable memristor substrate that can embed computation with storage.

https://knowledgezone.co.in/kbits/638b3bbcebd4e54136623a94

Memristor

Did you know about 'Memristor'?

Knowledge Zone
A belated greeting from the #ICIAM conference in #Tokyo, where we presented our modelling and simulation results on #2D materials and #memristors to 5000 applied #math colleagues from around the globe!

Hi Mastodon! We are the Leibniz group "Numerical methods for innovative semiconductor devices" @ Weierstrass Institute Berlin.

We develop and solve nonlinear #PDE models, often inspired by innovative #semiconductor devices at Weierstrass Institute Berlin.

Head: Patricio Farrell (@patriciofarrell, https://farrell.de)

Members: Dilara Abdel, Zeina Amer, Yiannis Hadjimichael

#math, #perovskites, #nanowires, #qw, #memristors, #lasers

Patricio Farrell | Research Group Leader

Patricio Farrell is a mathematician and research group leader, specializing in numerical methods for science and engineering.

https://www.nature.com/articles/s41598-022-24914-y

"The element realized herein is shown to bear the three required and necessary fingerprints of a meminductor, and its place on the periodic table of circuit elements is discussed by extending the genealogy of memristors to meminductors."

#electronics #circuits #ee #electricalEngineering #memristors #meminducance #inductance #electricity #inductor #electricField

Physical evidence of meminductance in a passive, two-terminal circuit element - Scientific Reports

The first intentional memristor was physically realized in 2008 and the memcapacitor in 2019, but the realization of a meminductor has not yet been conclusively reported. In this paper, the first physical evidence of meminductance is shown in a two-terminal passive system comprised primarily of an electromagnet interacting with a pair of permanent magnets. The role of series resistance as a parasitic component which obscures the identification of potential meminductive behavior in physical systems is discussed in detail. Understanding and removing parasitic resistance as a “resistive flux” is explored thoroughly, providing a methodology for extracting meminductance from such a system. The rationale behind the origin of meminductance is explained from a generalized perspective, providing the groundwork that indicates this particular element is a realization of a fundamental circuit element. The element realized herein is shown to bear the three required and necessary fingerprints of a meminductor, and its place on the periodic table of circuit elements is discussed by extending the genealogy of memristors to meminductors.

Nature