RIKEN Physcists Push Closer to Skyrmions as Computing Bits and Data Storage Method
RIKEN Physcists Push Closer to Skyrmions as Computing Bits and Data Storage Method Skyrmions seen in a kagome lattice Magnetic vortices have been made and
RIKEN Physcists Push Closer to Skyrmions as Computing Bits and Data Storage Method Skyrmions seen in a kagome lattice Magnetic vortices have been made and
The Qutrit Report? Using Aristotle’s Logic to Take Computing Beyond Qubits Scientists develop platform for building nanoelectronics and quantum processors In brief… + Scientists of
Spintronics Research: Who is Doing What and Where Researchers Make Strides in “Spintronics” (Spin Electronics) Excerpts and salient points ~ + Spintronics is the intrinsic
MnBi2Te4: A Topological Quantum Material Showing Promise for Technological Advances First Antiferromagnetic Topological Quantum Material Discovered by Scientists Excerpts and salient points ~ + The
Spintronics, Magnons as an Alternative to Silicon and a Competitor to Quantum Computing The Future of Computing could be Magnetic Excerpts and salient points ~
Trapping Photons in a Two-Dimensional System May Lead to Quantum Calculations and Quantum Simulations Massive photons in an artificial magnetic field Excerpts and salient points
Valleytronics Show Promise as Quantum Information Storage Method Valleytronics in a monolayer semiconductor at room temperature Points to note… + Valleytronics is very attractive for
Brazil Research Team Advancing Spintronics & Quantum Computing Using Weyl Semi-metals Break in temporal symmetry produces molecules that can encode information Full release… In a
Quantum Information Storage via Magnetic Skyrmions and Spintronics Understanding how electric current affects the magnetic skyrmion changes Key points… + Matter behaves differently when it’s
Adding a Building Block to the Quantum Toolbox: Spintronics at the University of Delaware U.S. Department of Energy sees powerful potential in spintronics research Excerpts