Max Planck Institute of Microstructure Physics attended the Colloquia series at Instituto de Ciencia de Materiales de Madrid with Claudia Felser on chirality and topology and Stuart Parkin on 2D and 3D racetrack memory.
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Signal category
Presence & Recognition
Quote
“Thank you to Instituto de Ciencia de Materiales de Madrid (ICMM - CSIC) for the invitation to Madrid, and for opening your Colloquia series with this pairing: Claudia Felser on chirality and topology, and our director Stuart Parkin on 2D and 3D racetrack memory.”
— Max Planck Institute of Microstructure Physics team
Company
Max Planck Institute of Microstructure Physics
We enable breakthroughs in science & technology with innovative materials and devices for information, energy & health
- Industry
- Research Services
- Location
- Halle (Saale), DE
- Company size
- 133 employees
The Max Planck Institute of Microstructure Physics explores the creation of novel materials and devices, and systems of devices that could allow for innovative technologies, particularly those that could enable advanced, highly energy-efficient, computing and memory-storage technologies. These include bio-inspired materials and thinking systems, and materials and devices that can support quantum technologies. The Institute has been entirely rebuilt with modernized offices, laboratories and a state-of-the-art clean-room, and an RBS facility, that are designed to encourage interactions and interdisciplinary research. The Institute is comprised of four independent departments which are closely coupled to one another. The institute has openings for outstanding Ph.D. students, post-doctoral researchers, student interns, technicians, and engineers. Current scientific projects include within the Nano-systems from ions, spins, and electrons department (Director: Stuart Parkin): spintronics, spin-orbitronics, chiraltronics, non-collinear spin textures, Racetrack Memory, atomically engineered thin film materials, topological materials, the electric field induced transformation of the structure and electronic properties of thin films to create complex three-dimensional meso-structures from the film’s surface. The Nanophotonics, Integration, and Neural Technology department focuses on multi-technology implantable devices that stimulate and record neurons and integrated photonic devices for 3D micro-displays.
Founded 1992