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Influence of laser-drive parameters on annular fast electron transport in silicon

D A MacLellan, D C Carroll, R J Gray, A P L Robinson, M P Desjarlais, D Neely, P McKenna2014年Plasma Physics and Controlled FusionIF 2.2出版社

Three-dimensional hybrid particle-in-cell simulations are used to investigate the sensitivity of annular fast electron transport patterns in silicon to the properties of the drive laser pulse. It is found that the annular transport, which is induced by self-generated resistive magnetic fields, is particularly sensitive to the peak laser pulse intensity. The radius of the annular fast electron distribution can be varied by changing the drive laser pulse properties, and in particular the focal spot size. An ability to optically 'tune' the properties of an annular fast electron transport pattern could have important implications for the development of advanced ignition schemes and for tailoring the properties of beams of laser-accelerated ions.

日本語訳

三次元ハイブリッド粒子インセルシミュレーションを用いて、シリコン中における環状高速電子輸送の駆動レーザーパルス特性に対する感度を調査した。自己生成抵抗性磁場によって誘起される環状輸送は、特にレーザーパルスのピーク強度に敏感であることが見出された。環状高速電子分布の半径は、駆動レーザーパルスの特性、特に焦点スポットサイズを変更することによって変化させることができる。環状高速電子輸送パターンの特性を光学的に「調整」する能力は、先進点火方式の開発やレーザー加速イオンビームの特性調整に重要な意味を持つ可能性がある。

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Fusion Advanced Studies TorusElectron transport
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