Research projects

…very strong electron pulse compression, Free Electron Laser (FEL) based techniques or a combination of compression and FEL schemes. The proposed project will start by exploring the capabilities in current…

Previous SCIENTÍFika

…with a complex chemistry. Common to all thin-film solar cell technologies is the strong correlation between device performance and nano-structure of the photo-active layer, interfaces and electrodes. With a combination…

Safety requirements for employees

…an emergency, it is always possible to unlock the door by pressing the black emergency door release button. Buttons to unlock the door at a 3 GeV beamline hutch. The

Safety requirements for contractors

…an emergency, it is always possible to unlock the door by pressing the black emergency door release button. Buttons to unlock the door at a 3 GeV beamline hutch. The

MAX IV involvement in European projects

…projects. Project duration: 2023-2026 https://www.mediconvillage.se/hanseatic-life-science-research-infrastructure-consortium-halric/ PRISMAS chevron_right PRISMAS – PhD Research and Innovation in Synchrotron Methods and Applications in Sweden – is a doctoral programme training the next generation of…

HALOS – A unique collaboration in Life Science

“Combining the complementary facilities DESY, European XFEL, MAX IV and ESS creates synergy effects and a globally unique infrastructure region with incredible opportunities for research in Life Science. The extensive…

MXCuBE3 at BioMAX – User Guide

…sample changer dewar for each UniPucks in the shipment. Click the Save button after completing this step. Assignment of sample container to position in sample changer dewar.   Once the

MAX IV & partners poised to innovate life science sector

MAX IV Laboratory, together with Science for Life Laboratory (SciLifeLab) and the European Spallation Source ERIC (ESS), form the joint Science Hub InfraLife, Infra Access for Life Science Sweden. Recently launched,…

Technical Notes

R3 beam dynamics High-Chromaticity_Optics_for_the_MAX_IV_3_GeV_Storage_Ring.pdf Internal_Note_20090902_Updated_Lattice_120614.pdf Internal_Note_20100318_Updated_Lattice_120614.pdf Internal_Note_20100512_Pulsed_Magnet_Injection_120612.pdf Internal_Note_20101101_Updated_Lattice_120614.pdf Internal_Note_20101203_Magnet_Synchronization_120612.pdf Internal_Note_20110117_Updated_Lattice_120612.pdf Internal_Note_20111124_Updated_Lattice_120611.pdf Internal_Note_20121107_Updated_Lattice_140129.pdf Internal_Note_20130724_OCO_Modeling_141009.pdf Internal_Note_20150129_MIK_Analysis_150130.pdf Internal_Note_20150930_MW_Threshold.pdf insertion devices Internal_Note_20090922_Insertion_Devices_for_the_MAX_IV_3_GeV_Storage_Ring.pdf Internal_Note_20100215_Insertion_Devices_for_the_MAX_IV_3_GeV_Ring.pdf Internal_Note_20101209_Elliptically_Polarising_Undulators_with_11_mm_Magnetic_Gap_at_the_MAX_IV_3_GeV_Ring.pdf Internal_Note_20111110_Comparison_Brilliance_MAX_IV_NSLS-II.pdf Internal_Note_20111220_Elliptically_polarizing_undulators_for_the_Arpes_beamline_at_the_Solaris_Light_Source.pdf RF cavities Internal_Note_20240410 Harmonic Cavity Parameters for Flat…