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Research Overview

X-Ray Spectroscopy

X-ray resonant magnetic reflectivity (XRMR)

Exchange Bias and pinned magnetic moments

Mysterious magnetism of ZnO

High Performance Permanent Magnets

X-Ray Magnetic Circular Dichroism (XMCD)

X-Ray Microscopy

Special SXM Techniques

MAXYMUS, our SXM at BESSY

Nano Magnonics

Magnetism in Antidot Lattices

First-Order Reversal Curves

Micromagnetic simulations

Dynamics of Magnonic Crystals

FM / HTc Superconductor Systems

Magnetic x-ray microscopy on high-Tc superconductors

Superconductor-ferromagnet heterostructures

Micro / Nano Optics

Spectroscopic Ellipsometry

Reactive Ion Etching

Direct Write Optical Lithography

Atomic Layer Deposition

Focused Ion Beam

Kinoform Lenses

Multilayer Fresnel Zone Plates

Fresnel Zone Plate

Scanning Transmission X-ray Microscopy

Nanostructured Films for Metrology

Hydrogen Storage

Hydrogen isotope separation

Hydrogen storage

Pressure composition isotherm PCT

Low-temperature adsorption

Low-temperature thermal desorption spectroscopy TDS

Research Facilities

Sample Preparation

Atomic-Force Microscope

MOKE

Light microscopes

Magnetometer

Cluster-XMCD

X-Ray Spectroscopes

Modern Magnetic Systems

Pressure composition isotherm PCT

Hydrogen high-pressure concentration isotherms (PCT) can be measured on only 100 mg sample mass precisely and reproducibly in dependence of pressure and temperature. This gives the possibility to determine the heat of adsorption over a wide range of surface coverage with high accuracy.

Max Planck Institute for Intelligent Systems

Max-Planck-Ring 4 72076 Tübingen Germany

Heisenbergstr. 3 70569 Stuttgart Germany

info@is.mpg.de

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DEPARTMENTS Empirical Inference Haptic Intelligence Perceiving Systems Physical Intelligence Robotic Materials Social Foundations of Computation RESEARCH GROUPS Algorithms and Society Biomimetic Materials and Machines Deep Models and Optimization Human Aspects of Machine Learning Learning and Dynamical Systems Neuromechanics of Movement Organizational Leadership and Diversity Robotic Composites and Compositions Robust Machine Learning Safety- and Efficiency- aligned Learning

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