Skip to main navigation
Skip to search
Skip to main content
Illinois Experts Home
LOGIN & Help
Link opens in a new tab
Search content at Illinois Experts
Home
Profiles
Research units
Research & Scholarship
Datasets
Honors
Press/Media
Activities
Magnetic Skyrmions in Synthetic Ferri- and Antiferromagnets
Axel Hoffmann
Materials Science and Engineering
Electrical and Computer Engineering
Materials Research Laboratory
Physics
Micro and Nanotechnology Laboratory
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Magnetic Skyrmions in Synthetic Ferri- and Antiferromagnets'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Antiferromagnetism
100%
Ferrier
100%
Magnetic Skyrmions
100%
Topological Charge
66%
Physical Properties
33%
Spin Reorientation Transition
33%
Magnetization
33%
Exchange Coupling
33%
Antiferromagnetic Coupling
33%
Dipolar Coupling
33%
Novel Behavior
33%
Interlayer Coupling
33%
Rare Earth
33%
Winding number
33%
In-plane Anisotropy
33%
Micromagnetic Simulation
33%
Spin Texture
33%
Nonmagnetic Interlayer
33%
Continuous Deformation
33%
Physical Representation
33%
Transition Metal System
33%
Skyrmion
33%
Rare Transitions
33%
Physics
Transition Metal
100%
Anisotropy
100%
Exchange Coupling
100%
Rare Earth Element
100%
Material Science
Transition Metal
100%
Anisotropy
100%
Physical Property
100%
Dipolar Coupling
100%
Chemistry
Skyrmion
100%
Multilayer
50%
Spin Reorientation Transition
25%
Antiferromagnetic
25%
Dipolar Coupling
25%
Rare Earth Element
25%
Transition Metal
25%
Anisotropy
25%