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Quick X-ray microtomography using a laser-driven betatron source

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arxiv 1712.08761 v1 pith:44YJWNSI submitted 2017-12-23 physics.optics physics.med-ph

classification physics.opticsphysics.med-ph
keywords x-raysourcesbetatronlaser-drivenreconstructionsourceacquiredacquisition
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Laser-driven X-ray sources are an emerging alternative to conventional X-ray tubes and synchrotron sources. We present results on microtomographic X-ray imaging of a cancellous human bone sample using synchrotron-like betatron radiation. The source is driven by a 100-TW-class titanium-sapphire laser system and delivers over $10^8$ X-ray photons per second. Compared to earlier studies, the acquisition time for an entire tomographic dataset has been reduced by more than an order of magnitude. Additionally, the reconstruction quality benefits from the use of statistical iterative reconstruction techniques. Depending on the desired resolution, tomographies are thereby acquired within minutes, which is an important milestone towards real-life applications of laser-plasma X-ray sources.

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