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通过零矢量势机制产生的阿秒和纳库仑电子束。

Attosecond and nano-Coulomb electron bunches via the Zero Vector Potential mechanism.

作者信息

Timmis R J L, Paddock R W, Ouatu I, Lee J, Howard S, Atonga E, Ruskov R T, Martin H, Wang R H W, Aboushelbaya R, Leyen M W von der, Gumbrell E, Norreys P A

机构信息

Department of Physics, University of Oxford, Oxford, OX1 3PU, UK.

John Adams Institute for Accelerator Science, University of Oxford, Oxford, OX1 3RH, UK.

出版信息

Sci Rep. 2024 May 11;14(1):10805. doi: 10.1038/s41598-024-61041-2.

Abstract

The commissioning of multi-petawatt class laser facilities around the world is gathering pace. One of the primary motivations for these investments is the acceleration of high-quality, low-emittance electron bunches. Here we explore the interaction of a high-intensity femtosecond laser pulse with a mass-limited dense target to produce MeV attosecond electron bunches in transmission and confirm with three-dimensional simulation that such bunches have low emittance and nano-Coulomb charge. We then perform a large parameter scan from non-relativistic laser intensities to the laser-QED regime and from the critical plasma density to beyond solid density to demonstrate that the electron bunch energies and the laser pulse energy absorption into the plasma can be quantitatively described via the Zero Vector Potential mechanism. These results have wide-ranging implications for future particle accelerator science and associated technologies.

摘要

世界各地多拍瓦级激光装置的调试正在加速进行。这些投资的主要动机之一是加速高质量、低发射度的电子束团。在这里,我们研究高强度飞秒激光脉冲与质量受限的致密靶的相互作用,以在透射中产生兆电子伏特阿秒电子束团,并通过三维模拟证实这些束团具有低发射度和纳库仑电荷量。然后,我们进行了从非相对论激光强度到激光量子电动力学(laser-QED) regime,从临界等离子体密度到超过固体密度的大参数扫描,以证明电子束团能量和激光脉冲能量吸收到等离子体中可以通过零矢量势机制进行定量描述。这些结果对未来的粒子加速器科学和相关技术具有广泛的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc7e/11088705/cadf0b846ad8/41598_2024_61041_Fig1_HTML.jpg

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