Altermagnets, which exhibit momentum-dependent spin splitting without spin–orbit coupling (SOC) or net magnetization, have recently attracted significant international attention. The realization and ...
Electrons inherently carry both spin and orbital angular momentum (i.e., properties that help to understand the rotating motions and behavior of particles). While some physicists and engineers have ...
The reliability of data storage and writing speed in advanced magnetic devices depend on drastic, complex changes in microscopic magnetic domain structures. However, it is extremely challenging to ...
Surprising result could accelerate the development of altermagnetic spintronics with potential applications in advanced memories and logic ...
Magnetic switching processes are considered a prime example of controllable physics at the nanometer scale: in certain ...
Using the circular vibration of surface acoustic waves, a collaborative research group have successfully controlled the magnetization of a ferromagnetic thin film. Using the circular vibration of ...
Imagine a laptop that remains cool, a phone capable of lasting for days on a single charge, or a memory chip engineered to ...
The magnet is the characteristic substance that draws in the ferromagnetic material like iron or nickel by the force of attraction. Individuals depend on magnets for industrial and commercial use.
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We might be completely wrong about the lifespan of our sun
The magnetism of stars seems to leave traces long after their death. Scientists have discovered what they call a "fossil ...
Altermagnets, which exhibit momentum-dependent spin splitting without spin–orbit coupling (SOC) or net magnetization, have recently attracted significant international attention. A team led by Prof.
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