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Coexisting magnetic states in 2D material cut memory energy 10‑fold

Coexisting magnetic states in 2D material cut memory energy 10‑fold

Chalmers researchers created a 2D crystal with ferromagnetism and antiferromagnetism, cutting memory switching energy by tenfold. It contains cobalt, iron, germanium and tellurium. Read more: getnews.me/coexisting-magnetic-stat... #magneticmemory

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Scientists from the Australian National University (ANU) and the University of Manchester have developed a powerful new single-molecule magnet that could revolutionize data storage.

#DataStorage #TechInnovation #SingleMoleculeMagnet #ANU #UniversityOfManchester #MagneticMemory

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Exploiting the full potential of multiferroic materials for magnetic memory devices As the digital world demands greater data storage and faster access times, magnetic memory technologies have emerged as a promising frontier. However, conventional magnetic memory devices have an inherent limitation: they use electric currents to generate the magnetic fields necessary to reverse their stored magnetization, leading to energy losses in the form of heat.

✨Future memory tech battles heat! Magnetic storage seeks energy-efficient flips. Could rewrite data's destiny? 🤯 #MagneticMemory

Source: phys.org/news/2025-05-exploiting-...

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Efficient read-out in #antiferromagnetic #spintronics: Researchers of @uni_mainz demonstrate technologically feasible read-out for ultrafast and stable #MagneticMemory www.uni-mainz.de/presse/aktuell/14647_ENG... // #antiferromagnets #spintronic #magnetoresistance...

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