2020
DOI: 10.1107/s1600577519015212
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Full-field spectroscopic measurement of the X-ray beam from a multilayer monochromator using a hyperspectral X-ray camera

Abstract: Full-field spectroscopic measurements of the X-ray beam from a multilayer monochromator are presented. With these measurements, the striping artefacts often found when using these devices can be fully characterized.

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Cited by 9 publications
(6 citation statements)
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“…However, even at synchrotron and X-ray free-electron lasers (XFEL) [9] facilities hyperspectral cameras can be combined with established imaging techniques to enable novel experiments to take place, such as in hyperspectral dark-field Xray imaging [10], or hyperspectral ptychographic imaging [11]. Finally, these hyperspectral systems also provide new diagnostic tools for lab setups and beamlines, offering accurate measurement of source spectra and optics parameters, as demonstrated previously by the authors [12].…”
Section: Introductionmentioning
confidence: 84%
See 1 more Smart Citation
“…However, even at synchrotron and X-ray free-electron lasers (XFEL) [9] facilities hyperspectral cameras can be combined with established imaging techniques to enable novel experiments to take place, such as in hyperspectral dark-field Xray imaging [10], or hyperspectral ptychographic imaging [11]. Finally, these hyperspectral systems also provide new diagnostic tools for lab setups and beamlines, offering accurate measurement of source spectra and optics parameters, as demonstrated previously by the authors [12].…”
Section: Introductionmentioning
confidence: 84%
“…In order to investigate whether these intensity variations are also accompanied by small fluctuations in beam energy, a second beamtime was requested where the beamline was characterized using the pnCCD-based SLcam camera and the SpeXIDAQ software system. While the full discussion of this experiment has recently been published [ 12 ], this work will highlight two key aspects where the SpeXIDAQ system played a key role in the experiment.…”
Section: Case Studiesmentioning
confidence: 99%
“…Nevertheless, the energy resolution achievable using a hyperspectral detector is still lower than what is achievable at synchrotrons where the photon energy is tuned by the monochromator, allowing for extremely high spectral resolutions (down to eV level at hard X-ray range). Implementing a hyperspectral detector system can have numerous challenges, and typically require large upgrades at the detector, such as with the electronics and data acquisition software [ 157 , 158 , 159 , 160 , 161 ]. Different (hyper)spectral detectors are being developed, and can be a suitable imaging tool for pharmaceutical compounds at high X-ray energies.…”
Section: X-ray Microtomographymentioning
confidence: 99%
“…По сравнению с кристаллами монохроматоры на основе МРЗ увеличивают интенсивность излучения вплоть до двух порядков, что делает их крайне перспективными для рентгеновской микроскопии, литографии и целого ряда других приложений, где требуется " собрать" как можно больше фотонов [1][2][3]. В условиях синхротронов 3-го и 4-го поколений, а также рентгеновских лазеров на свободных электронах, в ряде случаев МРЗ позволяют перейти от криогенного к водяному охлаждению рабочих отражающих элементов соответствующих монохроматоров, так как из-за меньших углов падения плотность мощности падающего излучения на поверхности МРЗ более чем на порядок меньше, чем на кристалле [4,5].…”
Section: Introductionunclassified