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Magnetism as the emergent phenomena
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Spin-orbital superstructures
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Case of Colossal Magnetoresistance (CMR)
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Bicrticality enhances the response.
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Phase Control of Correlated Electrons
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Transverse spiral spin structure produces ferroelectricity
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Polarization reversal upon magnetization reversel
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Spin State variables to host magneto-electric coupling
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Scalar Spin Chirality
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Field reversal of spin chirality
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What is magnetic skyrmion?
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Helical spin order in B20-type crystals
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Smal angle neutron scattering for Skyrmion Xtal
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Real Space Observation of Skymion crystal
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H-T Phase diagram
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Skyrmion crystal and liquid, 2D and 3D form?
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Magnetic Topological Insulator
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Discovery of Quantum Anomalous Hall Effect
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Emergent Electromagnetism
Description:
Explore magnetism as an emergent phenomenon in this 34-minute APS March Meeting 2014 Fred Kavli Special Symposium talk by Yoshinori Tokura from RIKEN Center for Emergent Matter Science. Delve into spin-orbital superstructures, colossal magnetoresistance, and phase control of correlated electrons. Examine transverse spiral spin structures and their role in ferroelectricity, as well as spin state variables in magneto-electric coupling. Investigate scalar spin chirality, magnetic skyrmions, and their various forms in B20-type crystals. Learn about helical spin orders, real space observations of skyrmion crystals, and H-T phase diagrams. Discover the concept of magnetic topological insulators and the quantum anomalous Hall effect. Gain insights into emergent electromagnetism and its implications for advanced materials and technologies.

Magnetism as the Emergent Phenomena

APS Physics
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