A research team has developed a device principle that can utilize "spin loss," which was previously thought of as a simple loss, as a new power source for magnetic control. Subscribe to our newsletter ...
Spin waves are collective oscillations of electron spins in magnetic materials. They represent a quantum mechanical phenomenon in which electrons’ angular momentum or spin fluctuates in a coordinated ...
When quantum spins interact, they can produce collective behaviors that defy long-standing expectations. Researchers have now shown that the Kondo effect behaves very differently depending on spin ...
Spin device: in this diagram of the spin valve the nanowire runs between a source and drain (both shown in gold) and the locations of the two quantum dots on the nanowire are denoted by the dashed ...
This collection supports and amplifies research related to SDG 9 - Industry, innovation and infrastructure. Recent advances in understanding and manipulating spin, orbital, and charge currents via ...
Researchers at Kyushu University have shown that careful engineering of materials interfaces can unlock new applications for ...
Three research projects have unveiled new breakthroughs in the study of skyrmions: small magnetic spin patterns that could form the basis of future high-density memory devices. Three research projects ...
“Spin-orbit-torque (SOT) devices are promising candidates for the future magnetic memory landscape, as they promise high endurance, low read disturbance, and low read error, in comparison with ...
A technical paper titled “Perspectives on field-free spin-orbit torque devices for memory and computing applications” was published by researchers at Northwestern University. “The emergence of ...
Researchers chiral phonons to convert wasted heat into spin information -- without needing magnetic materials. The finding could lead to new classes of less expensive, energy-efficient spintronic ...
(A) a single magnetic domain and (B) multiple magnetic domains with opposite polarization. (C) Following the subtraction of image (A) from image (B), a Kerr image with sharp contrast is obtained [39].
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