Governance structure

…issues the PI group raises are discussed within the Study Program Committee. The PRISMAS Selection Panel and Local Selection Committees are the central evaluating bodies in the student recruitment process….

Science at NanoMAX

…A central reason is that applications of micro‐ and nanobeams can be found in all major natural science fields, such as materials science, life science, earth science, nanoscience, as well…

Data Access

Data from CoSAXS is stored centrally at MAX IV and is available for further processing using MAX IV resources – or for download using either the Globus connect service or…

Bio & Chem labs

General The Bio & Chem labs at MAX IV are the central laboratory facility for the support of synchrotron experiments that are carried out at various beamlines and also for…

Beamline development collaborations

…million DKK from the Danish Ministry of Research. This led to subsequent investments from the three universities, the Capital and Central Denmark Regions and MAX IV Laboratory, and in 2015…

Oxygen cycling reveals path to next-gen ferroelectric devices

…desired ferroelectric properties, namely polarization. Central questions remained however, which drove the research further. Why were there polarization switches, and how it was robust with reducing size? Sample device (circled),…

HPC Basics

The High Performance Computing (HPC) cluster is a central resource available at MAX IV for users and staff. It is a small cluster compared to what one would find at…

Beamline optics

…(not yet in operation). For the approximate flux emitted from the undulator, see figure below: Theoretical integrated central-cone flux versus x-ray energy. A number of insertion device gaps are specified…

Data access

Data processing and downloading Data collected at ForMAX is stored centrally at MAX IV. The data can either be further processed using MAX IV computing resources or downloaded, see instructions…

Modelling electrochemical potential for better Li-batteries

…reactions at battery electrode-electrolyte interfaces. In simple terms, the difference enables the chemical reaction necessary for Li-ion battery function. A central question the researchers considered—how does the electrochemical potential difference…