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XFEL coherent diffraction imaging for weakly scattering particles using heterodyne interference
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XFEL coherent diffraction imaging for weakly scattering particles using heterodyne interference

Chi-Feng Huang, Wei-Hau Chang, Ting-Kuo Lee, Yasumasa Joti, Yoshinori Nishino, Takashi Kimura, Akihiro Suzuki, Yoshitaka Bessho, Tsung-Tse Lee, Mei-Chun Chen, …
AIP Advances, 卷.10(5), 055219-1
05/2020

摘要

Physics and Astronomy (all)
The spatial resolution of X-ray free-electron laser (XFEL) coherent diffraction imaging is currently limited by the fluence of XFELs. Here, we clarify this issue by systematically studying the diffraction with a SPring-8 angstrom compact free electron laser XFEL on gold nanoparticles of size from 10 nm to 80 nm in water solution. The coherent X-ray diffraction patterns obtained from single XFEL pulses were quantitatively analyzed using a small-angle X-ray scattering scheme along with computer simulations. The results show that the detectability of Au nanoparticles can be described by a "master curve"as a function of total electron density, particle size, and X-ray fluence. The difficulty in detecting a small particle under the current XFEL fluence, however, could be largely eliminated by the image enhancement effect through interference from a strong scattering nanoparticle nearby. We investigate this image enhancement effect by quantitatively analyzing the two-particle scattering from Au nanoparticles, and further, applying it to detect a weak biological object of influenza virus with the aid of an Au nanoparticle.

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https://doi.org/10.1063/1.5129406檢視
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