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激光尾场加速器中用于电子回旋辐射的非线性量子电动力学方法。

Non-linear QED approach for betatron radiation in a laser wakefield accelerator.

作者信息

Ong J F, Berceanu A C, Grigoriadis A, Andrianaki G, Dimitriou V, Tatarakis M, Papadogiannis N A, Benis E P

机构信息

Extreme Light Infrastructure - Nuclear Physics (ELI-NP), "Horia Hulubei" National Institute for Physics and Nuclear Engineering (IFIN-HH), 30 Reactorului Street, 077125, Bucharest-Măgurele, RO, Romania.

Institute of Plasma Physics and Lasers, University Research and Innovation Centre, Hellenic Mediterranean University, 74100, Rethimno, Crete, Greece.

出版信息

Sci Rep. 2024 Jan 5;14(1):605. doi: 10.1038/s41598-023-50030-6.

Abstract

Laser plasma-based accelerators provide an excellent source of collimated, bright, and adequately coherent betatron-type x-ray pulses with potential applications in science and industry. So far the laser plasma-based betatron radiation has been described within the concept of classical Liénard-Wiechert potentials incorporated in particle-in-cell simulations, a computing power-demanding approach, especially for the case of multi-petawatt lasers. In this work, we describe the laser plasma-based generation of betatron radiation at the most fundamental level of quantum mechanics. In our approach, photon emission from the relativistic electrons in the plasma bubble is described within a nonlinear quantum electrodynamics (QED) framework. The reported QED-based betatron radiation results are in excellent agreement with similar results using Liénard-Wiechert potentials, as well as in very good agreement with betatron radiation measurements, obtained with multi-10-TW lasers interacting with He and multielectron N[Formula: see text] gas targets. Furthermore, our QED approach results in a dramatic reduction of the computational runtime demands, making it a favorable tool for designing betatron radiation experiments, especially in multi-petawatt laser facilities.

摘要

基于激光等离子体的加速器提供了一种极好的准直、明亮且具有足够相干性的电子感应加速器型X射线脉冲源,在科学和工业领域具有潜在应用。到目前为止,基于激光等离子体的电子感应加速器辐射是在粒子模拟中纳入经典李纳-维谢尔势的概念下进行描述的,这是一种对计算能力要求很高的方法,特别是对于多拍瓦激光的情况。在这项工作中,我们在量子力学的最基本层面描述了基于激光等离子体产生电子感应加速器辐射的过程。在我们的方法中,等离子体泡中相对论电子的光子发射是在非线性量子电动力学(QED)框架内进行描述的。所报道的基于QED的电子感应加速器辐射结果与使用李纳-维谢尔势的类似结果非常吻合,并且与用多10太瓦激光与氦气和多电子N₂气体靶相互作用获得的电子感应加速器辐射测量结果也非常一致。此外,我们的QED方法显著降低了计算运行时间需求,使其成为设计电子感应加速器辐射实验的有利工具,特别是在多拍瓦激光设施中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abe7/10770394/0ba90970705f/41598_2023_50030_Fig1_HTML.jpg

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