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D-Wave's Advantage2, with 1,200+ qubits, outperformed ORNL's Frontier supercomputer in simulating magnetic materials.
In an ejection that would have caused its rotation to slow, a magnetar is depicted losing material into space in this ...
Recently, a group of researchers discovered a novel way to achieve spin-valve effects using kagome quantum magnets.
Recently, a research team achieved real-time tracking of electronic/magnetic structure evolution in Li-rich Mn-based ...
The Hopfield network was a “conceptual breakthrough,” said Marc Mézard, a theoretical physicist at Bocconi University in ...
In today’s vision to improve technologies for electronic devices further, a physical limit is appearing to Moore’s law, the trend in the last 50 years to ...
19h
AZoRobotics on MSNBreakthrough Origami Material Could Power Motorless Robots and MicrodevicesThis innovative metamaterial, inspired by origami, moves like a robot using magnetic fields, paving the way for advanced soft ...
Two new research studies explore how a stellar nursery in the heart of the Milky Way is affected by the region’s strong ...
Astronomers have discovered a second long-sought production site of gold, uranium and other heavy elements — and answered a ...
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AZoRobotics on MSNCreating Complex Magnetic Devices with Multi-Material 3D PrintingTsinghua University researchers propose an upgraded DLP 3D printing method for creating composite magnetic structures, ...
This artist's concept depicts a magnetar - a type of neutron star with a strong magnetic field - losing material into space.
Researchers at EPFL have made a breakthrough by storing and manipulating digital data using charge-free spin waves, moving ...
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