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Optimization of the electron beam properties from intense laser pulses interacting with structured gas jets

机译:通过强激光脉冲与结构化气体射流相互作用来优化电子束性能

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摘要

Laser plasma acceleration has been intensely investigated for its ability to produce energetic, ultrashort electron bunches in a compact distance. A high intensity laser pulse propagating through a plasma expels the electrons from the optical axis via the ponderomotive force, leaving behind a column of ions and driving a density wake. The accelerating electric fields present in the wake can reach several orders of magnitude greater than those found in radio-frequency cavities, allowing for compact systems much smaller than those using conventional accelerators. This compact source can provide electrons for various applications including stages for a high energy collider or for production of x-ray pulses from coherent undulator radiation. However, these applications require tunable, stable and high-quality electron beams. We report on a study of controlled injection along a shock-induced density downramp of laser-plasma-accelerated electrons through precision tailoring of the density profile produced from a mm-scale gas jet. Using BELLA Center's TREX Ti:Sapphire laser, the effects of the plasma density profile and the tilt of the shock front on the beam spatial profile, steering, and energy were investigated experimentally. To explain these relationships, we propose simple models which agree well with experimental results. Using this technique, electron beam quality was tailored, allowing for the production of high-quality electron beams with percent-level energy spreads over a range of energies.
机译:激光等离子体加速已被广泛研究,因为它能够在紧凑的距离内产生高能超短电子束。在等离子体中传播的高强度激光脉冲会通过质动力将电子从光轴中驱出,留下一列离子并驱动密度唤醒。尾波中出现的加速电场可能会比射频腔中发现的电场大几个数量级,从而使紧凑型系统比使用传统加速器的系统小得多。这种紧凑的源可以为各种应用提供电子,包括用于高能对撞机的平台或用于从相干波荡器辐射产生X射线脉冲的电子。但是,这些应用需要可调,稳定和高质量的电子束。我们报告了通过精确定制毫米级气体射流产生的密度分布图,沿着激射诱导的激光等离子体加速电子的密度下降沿受控注入进行的研究。使用BELLA Center的TREX Ti:Sapphire激光器,实验研究了等离子体密度分布和激波锋面的倾斜对光束空间分布,转向和能量的影响。为了解释这些关系,我们提出了与实验结果吻合的简单模型。使用这种技术,可以定制电子束的质量,从而可以在能量范围内产生百分比级能量的高品质电子束生产。

著录项

  • 来源
  • 会议地点 Prague(CZ)
  • 作者单位

    Lawrence Berkeley National Laboratory, 1 Cyclotron Rd, Berkeley CA 94720, USA,University of California - Berkeley, Berkeley CA 94720, USA;

    University of California - Berkeley, Berkeley CA 94720, USA;

    University of California - Berkeley, Berkeley CA 94720, USA;

    University of California - Berkeley, Berkeley CA 94720, USA;

    University of California - Berkeley, Berkeley CA 94720, USA;

    University of California - Berkeley, Berkeley CA 94720, USA;

    University of California - Berkeley, Berkeley CA 94720, USA;

    University of California - Berkeley, Berkeley CA 94720, USA;

    University of California - Berkeley, Berkeley CA 94720, USA;

    University of California - Berkeley, Berkeley CA 94720, USA;

    University of California - Berkeley, Berkeley CA 94720, USA;

    Lawrence Berkeley National Laboratory, 1 Cyclotron Rd, Berkeley CA 94720, USA,University of California - Berkeley, Berkeley CA 94720, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    laser plasma accelerator; density downramp injection; shock;

    机译:激光等离子体加速器密度下降斜坡注入;休克;

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