SINBAD的介电激光加速器计划

W. Kuropka, R. Abmann, F. Burkart, H. Cankaya, U. Dorda, I. Hartl, F. Kärtner, F. Lemery, B. Marchetti, F. Mayet
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引用次数: 2

摘要

德国电子同步加速器(Desy)的短束和创新加速器(SINBAD)是一个专门的长期加速器开发和研究设施。预计它将容纳几个新的高梯度粒子加速技术的研究工作,包括太赫兹、等离子体和介电激光。将提供一个简短的概述。在候选的未来应用是介电激光加速器(DLA)。在由戈登和贝蒂·摩尔基金会资助的国际芯片加速器项目(ACHIP)中,光栅型dla正在进行研究,目标是建立一个1 MeV的“鞋盒”台式加速器,只需要一个合适的激光系统作为输入。为了实现这一目标,必须研究适合DLA的微束列车的创建和处理。在SINBAD (ARES)直线加速器上的加速器研究实验将提供非常低发射度、超短、高质量的电子束,用于研究这些主题。提出了实现这些目标的两种实验方法。其中一个重点是生产和注入相同步微束串到DLA。该实验适用于控制电子束和加速场之间的相位,与传统的射频加速器相当。利用激光调制器和磁弯实现了一种由种子自由电子激光应用产生的微聚束方案。用于调制器的激光也将驱动DLA,将微束中的间距与加速器的周期性联系起来。另一种方法是将fs电子束注入到DLA中,探测加速场并显示与注入阶段相关的粒子的不同光谱。一般的限制也将被讨论。第一次实验计划于2019年春季进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plans for Dielectric Laser Accelerators at SINBAD
Short and INnovative Bunches and Accelerators At Desy (SINBAD) at Deutsches Elektronen Synchrotron (DESY) is a dedicated long-term accelerator development and research facility. It is foreseen to house several research efforts towards novel high gradient particle acceleration technologies including THz, plasma and dielectric laser based types. A brief overview will be provided. Among the candidates for future applications are dielectric laser accelerators (DLA). Within the Accelerator on a CHip International program (ACHIP) collaboration funded by Gordon and Betty Moore Foundation, grating type DLAs are being investigated with the goal to build a 1 MeV ‘shoe box’ table top accelerator, only requiring a suitable laser system as input. To achieve this goal, the creation and handling of micro-bunch trains in the regime suitable for DLA has to be researched. The Accelerator Research Experiment at SINBAD (ARES) linear accelerator will to deliver very low-emittance, ultra-short, high-quality electron bunches to be used to investigate these topics. Two experimental approaches towards these goals are presented. One is focused on producing and injecting a phase-synchronous micro-bunch train into a DLA. This experiment is suitable for controlling the phase between electron bunches and the accelerating fields comparable to conventional radiofrequency accelerators. A micro-bunching scheme from seeded free-electron-laser applications using a laser modulator and a magnetic chicane is foreseen to be implemented. The laser for the modulator will also drive the DLA, connecting the spacing in the micro-bunch to the periodicity of the accelerator. An additional approach is focused towards injection of a fs electron bunch into a DLA, probing the accelerating fields and showing different spectra of the particles correlated to the injection phase. The general limitations will be also be discussed. First experiments are planned for spring 2019.
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