1.5 GeV storage ring

The MAX IV 1.5 GeV storage ring is based on a compact double-bend achromat lattice for the production of bright soft x-ray and UV radiation. The storage ring is a…

A cloudy route for shipping in the Arctic

combustion in, for example, black carbon, soot or sulphates. Shippers meet the compliancy standard today with use of sulphur removing devices, namely scrubbers, or fuel with low sulphur content (FSC)….

Low Density Matter

…HIPPIE FemtoMAX MAX IV storage rings Accelerator name R1 R2 Energy (GeV) 1.5 3 Photon Energy 4.5 eV – 1500 eV 200 eV – 35 keV Circumference 96 m 528…

Deciphering corrosion resistance of superalloys

…Delblanc A., Pan J., Lundgren E. Thickness and composition of native oxides and near-surface regions of Ni superalloys open_in_new Journal of Alloys and Compounds, 25 February 2022 DOI: 10.1016/j.jallcom.2021.162657 open_in_new…

User Guide

…users Need to book a lab? Invitation letter Practical information 3 While at MAX IV Welcome to MAX IV! We gathered a few things that could be good to know…

Selection process for research projects

…ethical issues assessment conducted by three appointed experts within the committee. National distribution, gender equality, and topic variety In the first call for students, 29 excellence-based research projects were chosen…

Beamlines

…view up to 10 mm using beam expansion optics. The primary intended energy range is 15–45 keV, potentially reaching up to 60 keV. With the low-emittance 3 GeV ring, MAX…

Post beamtime

…MAX IV conda channel provides the necessary Linux packages. Data can then be browsed as above and visualized as below. conda config –add channels maxiv conda install bitshuffle For windows…

Publications

complete list The full list of all publications connected to NanoMAX (be it on data taken at NanoMAX or publications about the beamline) can be found on the MAX IV…