Sebastian Meyer

About

Hi! I am Sebastian Meyer. This profile was pulled together from public sources by some crap AI bot. I did not change a thing (apart from this "About" section), so everything you find here is utter bullshit. In fact, they have managed to get not a single fact right. That's what you get if you collect data from people without their consent. Eat shit, hello.cv!

Work

Fonds de la Recherche Scientifique - FNRS (F.R.S.-FNRS)
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Fellow Postdoctoral Researcher

Belgium

Université de Liège
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Post-Doc

Belgium

Christian-Albrechts-Universität zu Kiel
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PhD student

Germany

Publications

Manipulation of Ferroic Orders via Continuous Biaxial Strain Engineering in Multiferroic Bismuth Ferrite

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Advanced Science

Summary

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Higher Order Topological Defects in a Moiré Lattice

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Advanced Functional Materials

Summary

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Engineering magnetic domain wall energies in BiFeO3 via epitaxial strain: A route to assess skyrmionic stabilities in multiferroics from first principles

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Physical Review B

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Exchange and Dzyaloshinskii-Moriya interaction in Rh/Co/Fe/Ir multilayers: Towards skyrmions in exchange-frustrated multilayers

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Physical Review B

Summary

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Lifetime of coexisting sub-10 nm zero-field skyrmions and antiskyrmions

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npj Quantum Materials

Summary

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Spin-current driven Dzyaloshinskii-Moriya interaction in multiferroic BiFeO3 from first principles

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Physical Review B

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Trends of higher-order exchange interactions in transition metal trilayers

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Physical Review B

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Distorted 3Q state driven by topological-chiral magnetic interactions

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Physical Review B

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Tuning exchange interactions in antiferromagnetic Fe/W(001) by 4d transition-metal overlayers

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Physical Review B

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Mechanism for ultrafast electric-field driven skyrmion nucleation

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Physical Review B

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First-principles study of spin spirals in the multiferroic BiFeO3

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Physical Review B

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Discovery of Magnetic Single- and Triple-𝐪 States in Mn/Re(0001)

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Phys. Rev. Lett.

Summary

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Dead magnetic layers at the interface: Moment quenching through hybridization and frustration

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Physical Review Research

Summary

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Dead magnetic layers at the interface: Moment quenching through hybridization and frustration

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Physical Review Research

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Electrical Detection of Domain Walls and Skyrmions in Co Films Using Noncollinear Magnetoresistance

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Physical Review Letters

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Isolated zero field sub-10 nm skyrmions in ultrathin Co films

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Nature Communications

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First-principles prediction of sub-10-nm skyrmions in Pd/Fe bilayers on Rh(111)

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Physical Review B

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Competition of Dzyaloshinskii-Moriya and Higher-Order Exchange Interactions in Rh/Fe Atomic Bilayers on Ir(111)

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Physical Review Letters

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Domain walls and Dzyaloshinskii-Moriya interaction in epitaxial Co/Ir(111) and Pt/Co/Ir(111)

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Physical Review B

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Dzyaloshinskii-Moriya interaction at an antiferromagnetic interface: First-principles study of Fe/Ir bilayers on Rh(001)

Published by

Physical Review B

Summary

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