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Observation of electron transport dynamics in high intensity laser interactions using multi-energy monochromatic x-ray imaging

L A Gizzi, A Giulietti, D Giulietti, P Köster, L Labate, T Levato, F Zamponi, A Lübcke, T Kämpfer, I Uschmann2007年Plasma Physics and Controlled FusionIF 2.2出版社

We describe recent measurements in which a novel imaging technique was used to investigate the transport of high energy electrons produced by the interaction of a femtosecond laser pulse with a three-layer target at an intensity of 5 × 1019 W cm−2. The imaging system was configured to work in a single-photon detection regime to identify the energy of the x-ray photons and to discriminate among Kα photons generated in each target layer. Electrons emerging from the rear side after propagation through all the target layers were also detected using a custom developed detector. The results on fast electron propagation are combined with the information obtained from electron diagnostics and are modelled using analytical and numerical codes to obtain a detailed description of electron propagation dynamics.

日本語訳

我々は、フェムト秒レーザーパルスと3層ターゲットとの相互作用によって生成される高エネルギー電子の輸送を調査するために、新しいイメージング技術を用いた最近の測定について報告する。このイメージングシステムは、単一光子検出モードで動作するように構成され、X線光子のエネルギーを同定し、各ターゲット層で生成されたKα光子を識別することを可能にした。また、全ターゲット層を伝播した後に後面から放出される電子も、独自に開発した検出器を用いて検出された。高速電子伝播に関するこれらの結果は、電子診断から得られた情報と組み合わせられ、解析的および数値的コードを用いてモデル化されることにより、電子伝播ダイナミクスの詳細な記述が得られた。

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Electron transportX-ray imaging
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