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Spectral and spatial characterisation of laser-driven positron beams

G Sarri, J Warwick, W Schumaker, K Poder, J Cole, D Doria, T Dzelzainis, K Krushelnick, S Kuschel, S P D Mangles2017年Plasma Physics and Controlled FusionIF 2.2出版社

The generation of high-quality relativistic positron beams is a central area of research in experimental physics, due to their potential relevance in a wide range of scientific and engineering areas, ranging from fundamental science to practical applications. There is now growing interest in developing hybrid machines that will combine plasma-based acceleration techniques with more conventional radio-frequency accelerators, in order to minimise the size and cost of these machines. Here we report on recent experiments on laser-driven generation of high-quality positron beams using a relatively low energy and potentially table-top laser system. The results obtained indicate that current technology allows to create, in a compact setup, positron beams suitable for injection in radio-frequency accelerators.

日本語訳

高品質な相対論的陽電子ビームの生成は、基礎科学から実用的応用に至るまでの幅広い科学・工学分野における潜在的な重要性から、実験物理学の中心的な研究領域である。現在、プラズマベースの加速技術とより従来型の高周波加速器を組み合わせたハイブリッド装置の開発への関心が高まっており、これにより装置の小型化とコスト削減が図られている。本稿では、比較的低エネルギーでテーブルトップ型のレーザーシステムを用いた、高品質陽電子ビームのレーザー駆動生成に関する最近の実験について報告する。得られた結果は、現在の技術を用いることで、コンパクトな構成において高周波加速器への入射に適した陽電子ビームを生成できることを示している。

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