Diffractive-refractive optics: low-aberration Bragg-case focusing by precise parabolic surfaces

Based on analytical formulae calculations and ray‐tracing simulations a low‐aberration focal spot with a high demagnification ratio was predicted for a diffractive–refractive crystal optics device with parabolic surfaces. Two Si(111) crystals with two precise parabolic‐shaped grooves have been prepa...

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Veröffentlicht in:Journal of synchrotron radiation 2010-01, Vol.17 (1), p.36-40
Hauptverfasser: Oberta, P., Mikulík, P., Kittler, M., Hrdý, J., Peverini, L.
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Sprache:eng
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Zusammenfassung:Based on analytical formulae calculations and ray‐tracing simulations a low‐aberration focal spot with a high demagnification ratio was predicted for a diffractive–refractive crystal optics device with parabolic surfaces. Two Si(111) crystals with two precise parabolic‐shaped grooves have been prepared and arranged in a dispersive position (+,−,−,+) with high asymmetry. Experimental testing of the device at beamline BM05 at the ESRF provided a focal spot size of 38.25 µm at a focal distance of 1.4 m for 7.31 keV. This is the first experiment with a parabolic‐shaped groove; all previous experiments were performed with circular grooves which introduced extreme aberration broadening of the focal spot. The calculated and simulated focal size was 10.8 µm at a distance of 1.1 m at 7.31 keV. It is assumed that the difference between the measured and calculated/simulated focal spot size and focal distance is due to insufficient surface quality and to alignment imperfection.
ISSN:1600-5775
0909-0495
1600-5775
DOI:10.1107/S0909049509050407