Abstract

Laser fusion research needs much more high-time-resolved diagnostic technologies to study the dynamic process in laser plasma. We develop a special method and setup a device to measure the electromagnetic field in the plasma by using a single electron bunch. The measurement covers the whole-time window of the plasma process driven by a 3.6 ns laser pulse. An electron source can generate a single electron bunch with 0–100 keV energy and 10ns bunch length. A laser pulse with 1 J energy and 532 nm wavelength irradiates on the edge of a silver target, the target nearby the irradiated spot is ionized into plasma. At the beginning of plasma generation, the head of the electron beam begins to pass through the plasma. Electromagnetic field in plasma pushes the electrons transversely. A high voltage pulse at a good time is used to deflect the electrons linearly in the transverse direction to avoid overlapping of the different electrons on the scintillator downstream. By analyzing the deflection distances of the different electrons in this single bunch, we succesfully achieve an average electronic field along the trajectory in the plasma in the whole plasma process. The maximum value of this electronic field is <inline-formula> <tex-math id="M2">\begin{document}$ 7.74\times {10}^{5}\;\mathrm{V}/\mathrm{m} $\end{document}</tex-math> <alternatives> <graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="1-20211374_M2.jpg"/> <graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="1-20211374_M2.png"/> </alternatives> </inline-formula>.

Highlights

  • Simulation result on electron source, beam with 100 keV energy focused on the target

  • 实验上成功实现了单 发电子束团对整个激光等离子体内电场的诊断测 量, 获得了演化曲线, 得到了实验条件下激光等离 子体内最大电场强度约 7.74 × 105 V/m

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Summary

Introduction

(2021 年 7 月 25 日收到; 2021 年 9 月 17 日收到修改稿) 实验中, 高压静电电子源产生能量 0—100 keV 连续可调、脉宽 10ns 的 电子束团. 1 J, 532 nm, 脉宽约 4 ns 的激光脉冲聚焦到银靶上, 激发产生等离子体. 电子束团穿过激光等离子 体, 被其中的电磁场调制后成像, 单发电子束团时间宽度会覆盖整个等离子体持续时间, 通过分析电子束团 的调制强度, 推得等离子体内电磁场的变化. 实验上成功实现了单发电子束团对整个激光等离子体内电场的 诊断测量, 获得了演化曲线, 推算出实验条件下电子束通过路径上平均电场的最大值约为 7.74 × 105 V/m . 关键词:电子束团, 激光等离子体, 电磁场, 同步 PACS:29.27.Eg, 52.40.Mj, 52.70.–m, 52.70.Ds

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