Positron Beam Loading and Acceleration in the Blowout Regime of a Plasma Wakefield Accelerator.

IF 10.7 1区 综合性期刊 Q1 Multidisciplinary
Research Pub Date : 2025-09-09 eCollection Date: 2025-01-01 DOI:10.34133/research.0878
Shiyu Zhou, Siqin Ding, Weiming An, Qianqian Su, Jianfei Hua, Fei Li, Warren B Mori, Chan Joshi, Wei Lu
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引用次数: 0

Abstract

Plasma wakefield acceleration in the nonlinear blowout regime has achieved marked milestones in electron beam acceleration, demonstrating high acceleration gradients and energy efficiency while preserving excellent beam quality. However, this regime is deemed unsuitable for achieving positron acceleration of comparable results, which is vital for future compact electron-positron colliders. In this article, we find that an intense positron beam loaded at the back of beam-driven blowout cavity can self-consistently induce the focusing field and flatten the longitudinal wakefield, leading to stable, high-efficiency, and high-quality positron acceleration. This is achieved through the formation of an on-axis electron filament induced by positron beam load, which shapes the plasma wakefield in a distinct way compared to electron beam load in the blowout regime. Via a nonlinear analytic model and numerical simulations, we explain the novel beam loading effects of the interaction between the on-axis filament and the blowout cavity. High-fidelity simulations show that a high-charge positron beam can be accelerated with >20% energy transfer efficiency, ~1% energy spread, and ~1 mm·mrad normalized emittance, while considerably depleting the energy of the drive beam. The concept can also be extended to simultaneous acceleration of electron and positron beams and high transformer ratio positron acceleration as well. This development offers a new route for the application of plasma wakefield acceleration into particle physics.

等离子体韦克菲尔德加速器井喷状态下的正电子束流加载和加速。
非线性井喷状态下的等离子体尾流场加速在电子束加速领域取得了里程碑式的成就,在保持优异束流质量的同时,显示出较高的加速梯度和能量效率。然而,这种状态被认为不适合实现类似结果的正电子加速,这对未来的紧凑型正电子对撞机至关重要。本文研究发现,在束驱动井喷腔的后部加载强正电子束,可以自一致地诱导聚焦场并使纵向尾迹场变平,从而实现稳定、高效、高质量的正电子加速。这是通过正电子束负载诱导的轴上电子丝的形成来实现的,与井喷状态下的电子束负载相比,正电子束负载以一种独特的方式形成等离子体尾流场。通过非线性分析模型和数值模拟,我们解释了轴向灯丝与喷气孔相互作用的新型光束加载效应。高保真仿真结果表明,在消耗驱动束能量的同时,高电荷正电子束流的能量传递效率可达20%,能量扩散可达1%,归一化发射度可达1 mm·mrad。这一概念也可以推广到电子束和正电子束同时加速和高变压比正电子加速。这一进展为等离子体尾流场加速在粒子物理中的应用提供了一条新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Research
Research Multidisciplinary-Multidisciplinary
CiteScore
13.40
自引率
3.60%
发文量
0
审稿时长
14 weeks
期刊介绍: Research serves as a global platform for academic exchange, collaboration, and technological advancements. This journal welcomes high-quality research contributions from any domain, with open arms to authors from around the globe. Comprising fundamental research in the life and physical sciences, Research also highlights significant findings and issues in engineering and applied science. The journal proudly features original research articles, reviews, perspectives, and editorials, fostering a diverse and dynamic scholarly environment.
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