Sort by
Refine Your Search
-
Category
-
Country
-
Employer
- The University of Manchester
- Delft University of Technology (TU Delft)
- Queensland University of Technology
- University of Basel
- University of Exeter
- ETH Zürich
- Eindhoven University of Technology (TU/e)
- Forschungszentrum Jülich
- Free University of Berlin
- German Cancer Research Center in the Helmholtz Association (DKFZ)
- HFML-FELIX
- Korea University
- Technische Universität München
- The University of Edinburgh
- 4 more »
- « less
-
Field
-
spin-lattice dynamics simulations, a framework that combines atomistic spin dynamics (magnons) with molecular dynamics (phonons), to investigate ways of manipulating spins in various magnetic systems
-
advances in additive manufacturing and computational design. Architected lattice metamaterials—structures whose properties arise from geometry rather than composition—offer unprecedented opportunities
-
Frequency Lattices and RF-Controlled Comb Dynamics Our group investigates new ways of controlling and confining electromagnetic waves through time as an active design dimension. Rather than engineering wave
-
to store and carry information. Imagine being able to create and delete skyrmions on demand at any position. Imagine doing so for more complex textures, or, ultimately, creating synthetic lattices
-
are combined at a certain twist angle between the crystal orientations, an additional periodic modulation of the atomic lattice potential can emerge, often referred to as moiré superlattice. At specific
-
areas: quantum field theories and effective quantum field theories, lattice QCD, non-equilibrium evolution in quantum field theory, finite temperature QCD, phenomenology of XYZ, higher order perturbative
-
. Contribute to research in the subproject A01 of CRC 1772 “Collective excited states in molecular lattices” under supervision of Prof. Dr. Reich. - Growth of highly ordered molecular layers (phtalocyanine
-
computational project where you will use a variety of methodologies to produce hierarchal 3D lattice structures. You will receive training in all necessary techniques, AI and programming languages throughout
-
. Recently, a breakthrough platform for exploring this frontier has been brought by semiconducting moiré materials (SMMs) consisting of twisted or lattice-mismatched monolayers of van der Waals (vdW) crystals
-
image processing techniques to denoise and improve electron optical phase images. Interpretation of recorded data in terms of the magnetic properties of the studied artificial spin ice lattices.