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Exploiting coherence for real-time studies by single-bunch imaging

机译:通过单束成像将相干性用于实时研究

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摘要

First real-time studies of ultra-fast processes by single-bunch imaging at the European Synchrotron Radiation Facility are reported. By operating the storage ring of the ESRF in single-bunch mode with its correspondingly increased electron bunch charge density per singlet, the polychromatic photon flux density at insertion-device beamlines is sufficient to capture hard X-ray images exploiting the light from a single bunch (the corresponding bunch length is 140 ps FWHM). Hard X-ray imaging with absorption contrast as well as phase contrast in combination with large propagation distances is demonstrated using spatial samplings of 11 µm and 35 µm pixel size. The images acquired allow one to track crack propagation in a bursting piece of glass, breaking of an electrical fuse as well as cell wall rupture in an aqueous foam. Future developments and their potential in the frame of the proposed Phase II of the ESRF Upgrade Program are discussed.
机译:据报道,欧洲同步辐射器通过单束成像对超快速过程进行了首次实时研究。通过以单束模式操作ESRF的存储环,使其相应增加的单束电子束电荷密度,插入设备束线处的多色光子通量密度足以捕获利用单束光的硬X射线图像(相应的束长为140 ps FWHM)。使用11μm和35μm像素大小的空间采样,展示了具有吸收对比度,相位对比度以及较大传播距离的硬X射线成像。所获取的图像使人们能够追踪破裂的玻璃片中的裂纹扩展,电熔丝的破裂以及水性泡沫中的细胞壁破裂。讨论了ESRF升级计划第二阶段提议中的未来发展及其潜力。

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