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Sökning: WFRF:(Heinz Andreas) > Mittuniversitetet

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1.
  • Chung, Simon, et al. (författare)
  • Transient heating of Pd nanoparticles studied by x-ray diffraction with time of arrival photon detection
  • 2024
  • Ingår i: Structural Dynamics. - : AIP Publishing. - 2329-7778. ; 11:4
  • Tidskriftsartikel (refereegranskat)abstract
    • Pulsed laser heating of an ensemble of Pd nanoparticles, supported by a MgO substrate, is studied by x-ray diffraction. By time-resolved Bragg peak shift measurements due to thermal lattice expansion, the transient temperature of the Pd nanoparticles is determined, which quickly rises by at least 100 K upon laser excitation and then decays within 90 ns. The diffraction experiments were carried out using a Cu x-ray tube, giving continuous radiation, and the hybrid pixel detector Timepix3 operating with single photon counting in a time-of-arrival mode. This type of detection scheme does not require time-consuming scanning of the pump-probe delay. The experimental time resolution is estimated at 15 +/- 5 ns, which is very close to the detector's limit and matches with the 7 ns laser pulse duration. Compared to bulk metal single crystals, it is discussed that the maximum temperature reached by the Pd nanoparticles is higher and their cooling rate is lower. These effects are explained by the oxide support having a lower heat conductivity.
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2.
  • Ehn, Sebastian, et al. (författare)
  • X-ray deconvolution microscopy
  • 2016
  • Ingår i: Biomedical Optics Express. - 2156-7085. ; 7:4, s. 1227-1239
  • Tidskriftsartikel (refereegranskat)abstract
    • Recent advances in single-photon-counting detectors are enabling the development of novel approaches to reach micrometer-scale resolution in x-ray imaging. One example of such a technology are the MEDIPIX3RX-based detectors, such as the LAMBDA which can be operated with a small pixel size in combination with real-time on-chip charge-sharing correction. This characteristic results in a close to ideal, box-like point spread function which we made use of in this study. The proposed method is based on raster-scanning the sample with sub-pixel sized steps in front of the detector. Subsequently, a deconvolution algorithm is employed to compensate for blurring introduced by the overlap of pixels with a well defined point spread function during the raster-scanning. The presented approach utilizes standard laboratory x-ray equipment while we report resolutions close to 10 mu m. The achieved resolution is shown to follow the relationship p/n with the pixel-size p of the detector and the number of raster-scanning steps n. (C) 2016 Optical Society of America
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  • Resultat 1-2 av 2
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refereegranskat (2)
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Graafsma, Heinz (2)
Pennicard, David (2)
Stierle, Andreas (1)
Pfeiffer, Franz (1)
Chung, Simon (1)
Vonk, Vedran (1)
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Ehn, Sebastian (1)
Epple, Franz Michael (1)
Fehringer, Andreas (1)
Noel, Peter (1)
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