SCIENTÍFika series
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FineEstBeAMS beamline is equipped with the following attributes: Techniques X-ray Photoelectron Spectroscopy (XPS), X-ray Absorption Spectroscopy (XAS), Angle-resolved Photoemission Spectroscopy (ARPES), Photoelectron Photoion Coincidence Spectroscopy (PEPICO), Time-of Flight Mass Spectroscopy…
…depending on the temperature range of an experiment: 1. Mo-based manipulator head for better heating. Radiative heating by filament (up to 800 °C), e-beam heating (up to 1200 °C, but…
…on resolution/spotsize Energy resolution 1meV at 21eV, 2meV at 63eV (measured, 800L/mm, 20μm exit slit) Gratings All user beamtimes so far have operated on a single grating (800 L/mm cPGM)…
A small lab for sample preparation is located in close connection to the experiment station. You can find the following special laboratory equipment. EquipmentDescriptionBalance Sartorius, 0.001g Fridge/Freezer ATEX/EX classed, -20oC…
…room A100382. Please, note that: As of now, there is no person assigned as the microscope’s operator. Should you definitely need help in imaging your sample(s), “Contacts” list to the…
Before submitting a proposal to NanoMAX Contact the beamline staff and discuss the proposed experiment. Mayor points to consider are the method(s) to be used, the nature and the mounting…
FEA Analysis of ForMAX flight tube. Our primary tool is the CAD software we use. Primarily we are using Solidworks for 3d modelling complemented by Ansys for different FEA analysis….
…are a Scienta R4000 electron spectrometer and a momentum imaging multi-hit-capable ion Time-of-Flight (TOF) spectrometer. They are equipped with fast position-sensitive detectors that are specifically designed for coincidence measurements. The electron…
Presented by Peter Fouquet from Institut Laue-Langevin (ILL), Grenoble, France The development of new materials for “green” energy production and storage is a key activity for the progression towards a…