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Targeted Spin-electric Control of Molecules for Quantum Technologies
Researchers at the Karlsruhe Institute of Technology (KIT) have achieved precise electrical control of molecular spins on surfaces, marking a significant advance for quantum technologies. Using electron spin resonance combined with scanning tunneling microscopy on iron phthalocyanine molecules, the team demonstrated effective spin-electric coupling via applied voltage. This approach replaces conventional magnetic fields, enabling faster and more localized manipulation of quan
Jul 222 min read


Quantum dynamics breakthrough overturns claim of ‘quantum supremacy,’ opens new research directions
By adapting an algorithm from the 1980s to mathematical objects called tensor networks, researchers at the Flatiron Institute show that classical computers can tackle a class of problems previously claimed to be solvable only by quantum computers
May 264 min read


Making ‘light’ work of computing
Penn physicists led by Bo Zhen have created hybrid light-matter particles that interact strongly enough to compute, pointing toward ultrafast, low-energy optical AI hardware.
May 192 min read


New photon-avalanching nanoparticles could enable next-generation optical computers
The breakthrough – which the team published recently in the journal Nature Photonics – paves the way for fabricating optical memory and t...
Mar 4, 20253 min read


Paving the way to extremely fast, compact computer memory
For decades, scientists have been studying a group of unusual materials called multiferroics that could be useful for a range of...
Jul 19, 20243 min read


Dark excitons shed new light on matter
A team of Monash researchers have uncovered for the first time the full effects of interactions between exciton-polaritons and their...
Jun 13, 20243 min read
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