Atomic-Scale Nanowires Can Now Be Produced At Scale

fahrbot-bot shares a report from Phys.Org: Researchers from Tokyo Metropolitan University have discovered a way to make self-assembled nanowires of transition metal chalcogenides at scale using chemical vapor deposition. By changing the substrate where the wires form, they can tune how these wires are arranged, from aligned configurations of atomically thin sheets to random networks of bundles. This paves the way…

The observation of photon-assisted tunneling signatures in Majorana wires

Researchers at the University of Copenhagen and Microsoft Quantum Lab Copenhagen have recently carried out a study investigating the potential of Majorana zero modes, zero-energy quasiparticle states that can be found in superconductive hybrid nanowires, as a means of protecting quantum data. Their paper, published in Nature Physics, outlines the observation of photon-assisted tunneling signatures in a Majorana nanowire, offering interesting…

Protein-Powered Device Creates Electricity From Moisture In the Air

Slashdot readers fahrbot-bot and operator_error share a report from Phys.Org: Scientists at the University of Massachusetts Amherst have developed a device that uses a natural protein to create electricity from moisture in the air, a new technology they say could have significant implications for the future of renewable energy, climate change and in the future of medicine. As reported today in…

Moore’s Law Isn’t Dead, But Needs a New and Broader Interpretation: Intel’s Top Exec

On Sunday, Intel held a five-hour event, where 100 attendees from startups, venture capital, and tech giants drank in semiconductor-themed cocktails and detailed explanations of how sand is processed into silicon chips. It was a celebration of how exponential upgrades from the chip industry have propelled progress in technology and society over the past 50 years — and an argument that…