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扁平电子束驱动的非对称结构中倾斜电磁尾场的观测

Observation of Skewed Electromagnetic Wakefields in an Asymmetric Structure Driven by Flat Electron Bunches.

作者信息

Lynn W, Xu T, Andonian G, Doran D S, Ha G, Majernik N, Piot P, Power J, Rosenzweig J B, Whiteford C, Wisniewski E

机构信息

Department of Physics and Astronomy, UCLA, Los Angeles, California 90095, USA.

Northern Illinois Center for Accelerator and Detector Development and Department of Physics, Northern Illinois University, DeKalb, Illinois 60115, USA.

出版信息

Phys Rev Lett. 2024 Apr 19;132(16):165001. doi: 10.1103/PhysRevLett.132.165001.

DOI:10.1103/PhysRevLett.132.165001
PMID:38701460
Abstract

Relativistic charged-particle beams that generate intense longitudinal fields in accelerating structures also inherently couple to transverse modes. The effects of this coupling may lead to beam breakup instability and thus must be countered to preserve beam quality in applications such as linear colliders. Beams with highly asymmetric transverse sizes (flat beams) have been shown to suppress the initial instability in slab-symmetric structures. However, as the coupling to transverse modes remains, this solution serves only to delay instability. In order to understand the hazards of transverse coupling in such a case, we describe here an experiment characterizing the transverse effects on a flat beam, traversing near a planar dielectric lined structure. The measurements reveal the emergence of a previously unobserved skew-quadrupolelike interaction when the beam is canted transversely, which is not present when the flat beam travels parallel to the dielectric surface. We deploy a multipole field fitting algorithm to reconstruct the projected transverse wakefields from the data. We generate the effective kick vector map using a simple two-particle theoretical model, with particle-in-cell simulations used to provide further insight for realistic particle distributions.

摘要

在加速结构中产生强纵向场的相对论性带电粒子束也必然会与横向模式耦合。这种耦合效应可能导致束流破裂不稳定性,因此在诸如直线对撞机等应用中,必须加以应对以保持束流质量。已表明具有高度不对称横向尺寸的束流(扁平束)可抑制平板对称结构中的初始不稳定性。然而,由于与横向模式的耦合仍然存在,这种解决方案仅能延迟不稳定性。为了理解这种情况下横向耦合的危害,我们在此描述一项实验,该实验表征了扁平束在靠近平面介质内衬结构处穿过时的横向效应。测量结果揭示,当束流横向倾斜时会出现一种先前未观察到的类似斜四极子的相互作用,而当扁平束平行于介质表面传播时则不存在这种相互作用。我们采用多极场拟合算法从数据中重建投影横向尾场。我们使用一个简单的双粒子理论模型生成有效踢腿矢量图,并利用粒子模拟对实际粒子分布提供进一步的见解。

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