-
quantum-classical approaches. You will work closely with our researchers and international partners from academia, industry and public agencies. Specifically, you will: Review the scientific literature and
-
the content of scientific articles, alongside relevant prior work. The method assesses the novelty of contributions by reasoning about their content, rather than counting citations. You will further develop
-
and application of high-performance hydrodynamic simulation methods, which this project aims to advance. In this project, you will work with an existing high-performance code to perform hydrodynamic
-
will use polarized inelastic neutron scattering to explore a non-collinear antiferromagnet, aiming to provide definitive evidence of altermagnetism beyond the collinear limit. The work will uncover
-
You will work at the interface between electrochemistry, robotics and data-driven research. The aim is to utilise and further develop an automated laboratory environment for scientific purposes in