Bortel G, Faigel G, Tegze M, Angelov B
Institute for Solid State Physics and Optics, Wigner Research Centre for Physics, PO Box 49, H-1525 Budapest, Hungary.
Institute of Physics, ELI Beamlines, Academy of Sciences of the Czech Republic, Na Slovance 2, CZ-18221 Prague, Czech Republic.
J Synchrotron Radiat. 2019 Jan 1;26(Pt 1):170-174. doi: 10.1107/S1600577518014686.
Atomic resolution X-ray holography can be realized by using the atoms of the sample as inside sources or inside detectors. However, until now there were only very few experiments in which the atoms played the role of inside sources. The reason is twofold: (i) technically, inside-detector experiments are much easier and faster; (ii) by using atoms as inside detectors one can measure holograms at many energies on the same sample, which helps the reconstruction. This paper shows that, using new technical developments, inside-source holograms can be taken much faster than inside-detector holograms and, by applying a sophisticated evaluation method, high-quality reconstruction from a single-energy hologram can also be obtained.
利用样品中的原子作为内部源或内部探测器,可实现原子分辨率的X射线全息术。然而,到目前为止,只有极少数实验让原子充当内部源的角色。原因有两方面:(i)从技术上讲,内部探测器实验要容易得多且速度更快;(ii)通过将原子用作内部探测器,可以在同一样品上以多种能量测量全息图,这有助于重建。本文表明,利用新的技术发展,获取内部源全息图的速度可比获取内部探测器全息图的速度快得多,并且通过应用一种复杂的评估方法,也可以从单能全息图获得高质量的重建结果。