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X-ray phase-contrast imaging using a quasi-monochromatic all-optical inverse Compton scattering source

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摘要 Laser wakefield accelerators(LWFAs)offer acceleration gradients up to 1000 times higher than those of conventional radio-frequency accelerators,offering a pathway to significantly more compact and cost-effective accelerator systems.This breakthrough opens up new possibilities for laboratory-scale light sources.All-optical inverse Compton scattering(AOCS)sources driven by LWFAs produce high-brightness,quasimonochromatic X rays with micrometer-scale source sizes,delivering the spatial coherence and resolution required for X-ray phase-contrast imaging(XPCI).These features position AOCS X-ray sources as promising tools for applications in biology,medicine,physics,and materials science.However,previous AOCS-based imaging studies have primarily focused on X-ray absorption imaging.In this work,we report successful experimental demonstrations of edge-enhanced in-line XPCI using energy-tunable,quasi-monochromatic AOCS X rays.With a spatial resolution of~20μm,our results clearly show the potential of high-resolution,AOCS-based XPCI applications.
出处 《Matter and Radiation at Extremes》 2026年第1期39-45,共7页 极端条件下的物质与辐射(英文)
基金 supported by the Strategic Priority Research Program of the Chinese Academy of Sciences(Grant No.XDB0530000) the Discipline Construction Foundation of“Double World-class Project”.
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