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JEMS2025

JEMS2025

JEMS 2025 will be held 24 – 29 Aug 2025 in hybrid format: online & onsite (Frankfurt, Germany).

JEMS 2025 venue: Goethe University Frankfurt, Hörsaalzentrum
© CampuService GmbH (background photo)

Organizing committee

Oliver Gutfleisch (Chair)
Technische Universität Darmstadt

Lambert Alff (Co-Chair)
Technische Universität Darmstadt

Programme Committee

Karin Everschor-Sitte (Chair)
University of Duisburg-Essen

Thomas Schrefl (co-Chair)
University for Continuing Education Krems

Gaspare Varvaro (co-Chair)
ISM-CNR, Rome

List of symposia

1 Energy efficient and sustainable magnetic materials for applications
2 Information storage and sensing technologies
3 Magnetic thin-films, interfaces and multilayers
4 2D magnetic systems, magnetic semiconductors
5 Curvilinear and 3D magnetism
6 Magnetic nanoparticles and nanoarchitectures
7 Magnetic textures
8 Alloys and intermetalics
9 Antiferromagnets and Altermagnets
10 Magnonics and ultrafast processes and THz
11 Molecular magnetism and ionic spintronics
12 Biomagnetism and biomedical applications
13 Magnetism for quantum technology
14 Neuromorphic and reservoir computing
15 Multiphysics and multifunctional materials
16 Strongly correlated systems
17 Computational magnetism and machine learning
18 Advanced characterization
19 Fundamentals of spin transport and spin orbitronics

List of symposia

1 Energy efficient and sustainable magnetic materials for applications
2 Information storage and sensing technologies
3 Magnetic thin-films, interfaces and multilayers
4 2D magnetic systems, magnetic semiconductors
5 Curvilinear and 3D magnetism
6 Magnetic nanoparticles and nanoarchitectures
7 Magnetic textures
8 Alloys and intermetalics
9 Antiferromagnets and Altermagnets
10 Magnonics and ultrafast processes and THz
11 Molecular magnetism and ionic spintronics
12 Biomagnetism and biomedical applications
13 Magnetism for quantum technology
14 Neuromorphic and reservoir computing
15 Multiphysics and multifunctional materials
16 Strongly correlated systems
17 Computational magnetism and machine learning
18 Advanced characterization
19 Fundamentals of spin transport and spin orbitronics