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Characterisation of a laser plasma betatron source for high resolution x-ray imaging

O J Finlay, J-N Gruse, C Thornton, R Allott, C D Armstrong, C D Baird, N Bourgeois, C Brenner, S Cipiccia, J M Cole2021年Plasma Physics and Controlled FusionIF 2.2出版社

We report on the characterisation of an x-ray source, generated by a laser-driven plasma wakefield accelerator. The spectrum of the optimised source was consistent with an on-axis synchrotron spectrum with a critical energy of keV and the number of photons per pulse generated above 1 keV was calculated to be . The x-ray beam was used to image a resolution grid placed 37 cm from the source, which gave a measured spatial resolution of 4 µm ×  5 µm. The inferred emission region had a radius and length of 0.5 ± 0.2 µm and 3.2 ± 0.9 mm respectively. It was also observed that laser damage to the exit aperture of the gas cell led to a reduction in the accelerated electron beam charge and a corresponding reduction in x-ray flux due to the change in the plasma density profile.

日本語訳

我々は、レーザー駆動プラズマ航跡場加速器によって生成されたX線源の特性評価について報告する。最適化された線源のスペクトルは、臨界エネルギーが keV のオンアクシスシンクロトロンスペクトルと一致し、1 keV 以上のエネルギーで1パルスあたりに生成される光子数は 個と計算された。このX線ビームを用いて、線源から37 cmの位置に配置された解像度チャートの撮像を行い、測定された空間分解能は4 µm × 5 µmであった。推定された発光領域の半径は0.5 ± 0.2 µm、長さは3.2 ± 0.9 mmであった。また、ガスセルの出口窓へのレーザー損傷により、加速された電子ビーム電荷が減少し、それに伴うプラズマ密度プロファイルの変化によってX線フラックスが低下することも観測された。

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