Abstract
Coherent diffractive imaging for the reconstruction of a two-dimensional (2D) finite crystal structure with a single pulse train of free-electron laser radiation at 7.97 nm wavelength is demonstrated. This measurement shows an advance on traditional coherent imaging techniques by applying it to a periodic structure. It is also significant that this approach paves the way for the imaging of the class of specimens which readily form 2D, but not three-dimensional crystals. We show that the structure is reconstructed to the detected resolution, given an adequate signal-to-noise ratio. © 2009 The American Physical Society.
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CITATION STYLE
Mancuso, A. P., Schropp, A., Reime, B., Stadler, L. M., Singer, A., Gulden, J., … Vartanyants, I. A. (2009). Coherent-Pulse 2D crystallography using a free-electron laser X-ray source. Physical Review Letters, 102(3). https://doi.org/10.1103/PhysRevLett.102.035502
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