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3D visualization of XFEL beam focusing properties using LiF crystal X-ray detector. | LitMetric

AI Article Synopsis

  • Researchers used lithium fluoride (LiF) crystals to create a 3D visualization of the focused beam profile from the SACLA XFEL, capturing its behavior as it travels through solid materials.
  • The LiF crystal detector's high sensitivity allowed for detailed measurements of beam intensity both near and far from the best focus, aiding in evaluating the XFEL source size and beam quality.
  • Their findings, which show a generated photoelectron cloud radius of about 600 nm for X-ray photons around 10 keV, suggest the method could be valuable for optimizing focusing systems at X-ray facilities, with a spatial resolution of approximately 0.4-2.0 μm for relevant photon energies.

Article Abstract

Here, we report, that by means of direct irradiation of lithium fluoride a (LiF) crystal, in situ 3D visualization of the SACLA XFEL focused beam profile along the propagation direction is realized, including propagation inside photoluminescence solid matter. High sensitivity and large dynamic range of the LiF crystal detector allowed measurements of the intensity distribution of the beam at distances far from the best focus as well as near the best focus and evaluation of XFEL source size and beam quality factor M(2). Our measurements also support the theoretical prediction that for X-ray photons with energies ~10 keV the radius of the generated photoelectron cloud within the LiF crystal reaches about 600 nm before thermalization. The proposed method has a spatial resolution ~0.4-2.0 μm for photons with energies 6-14 keV and potentially could be used in a single shot mode for optimization of different focusing systems developed at XFEL and synchrotron facilities.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4669527PMC
http://dx.doi.org/10.1038/srep17713DOI Listing

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