activity
20152020
most citedSpirit: Multifunctional Framework for Atomistic Spin Simulations

193 citations · 259 across the 4 of their papers we have counts for

collaborators

6 papers

cond-mat.mtrl-sci202023 cited

Material systems for FM-/AFM-coupled skyrmions in Co/Pt-based multilayers

Hongying Jia, Bernd Zimmermann, Markus Hoffmann +3

By means of systematic first-principles calculations based on density functional theory we search for suitable materials that can host antiferromagnetically coupled skyrmions. We c…

cond-mat.mes-hall2020

Atomistic perspective of long lifetimes of small skyrmions at room temperature

Markus Hoffmann, Gideon P. Müller, Stefan Blügel

The current development to employ magnetic skyrmions in novel spintronic device designs has led to a demand for room temperature-stable skyrmions of ever smaller size. We present e…

cond-mat.mtrl-sci201942 cited

Ab initio analysis of magnetic properties of prototype B20 chiral magnet FeGe

S. Grytsiuk, M. Hoffmann, J. -P. Hanke +4

FeGe in the B20 phase is an experimentally well-studied prototypical chiral magnet exhibiting helical spirals, skyrmion lattices and individual skyrmions with a robust length of 70…

cond-mat.mes-hall2019

Topological-chiral magnetic interactions driven by emergent orbital magnetism

Sergii Grytsiuk, Jan-Philipp Hanke, Markus Hoffmann +6

Two hundred years ago, André-Marie Ampère discovered that electric loops in which currents of electrons are generated by a penetrating magnetic field can interact with each other.…

cond-mat.mes-hall2019193 cited

Spirit: Multifunctional Framework for Atomistic Spin Simulations

Gideon P. Müller, Markus Hoffmann, Constantin Disselkamp +6

The \textit{Spirit} framework is designed for atomic scale spin simulations of magnetic systems of arbitrary geometry and magnetic structure, providing a graphical user interface w…

cond-mat.mes-hall20151 cited

Novel type of atomic-scale spin lattice at a surface and its emergent Hall effect

M. Hoffmann, J. Weischenberg, B. Dupe +4

We predict the occurrence of a novel type of atomic-scale spin lattice in an Fe monolayer on the Ir(001) surface. Based on density functional theory calculations we parametrize a s…