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Color Ultrafast Photography Study of a High-Current Discharge Initiated by Exploding a Short Wire in the Atmosphere

机译:彩色超快摄影通过在大气中爆炸短线发起的高电流放电

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摘要

In this paper, we describe the ultrafast slit-scanning photography of light phenomena arising at the stage of the electrical breakdown in the atmosphere and in a channel initiated by a wire explosion. The characteristics and features of the photographic registration of the SFR-1 camera using color and spectrozonal negative aerial films sensitive in the visible and near infrared regions of the optical spectrum are presented. Using photograms in color, we were able to visualize small-scale inhomogeneities, a current-carrying channel and its “shell,” emissions of matter, and shock waves in the plasma. This technique made it possible to record a secondary shock wave in the plasma on the discharge axis during the explosion of short (length ≈15 mm) copper and nichrome wires with a diameter of 100–150 μm at a stored energy of ~100 J. At the moment of cumulation in the plasma, a “hot spot” with a minimum size of ~0.5 mm was formed on the discharge axis. It may be the source of narrow-beam coherent radiation with X-ray photon energies of 10–30 keV. The cumulation mechanism is discussed based on the regularities of the z -pinch phenomenon in a discharge initiated by a wire explosion.
机译:在本文中,我们描述了在大气中电击阶段和由电线爆炸发起的频道中产生的光现象的超快狭缝扫描摄影。呈现了使用光谱和近红外区域敏感的SFR-1相机的照相登记的特性和特征。在颜色中使用摄影照片,我们能够可视化小规模的不均匀性,电流携带的通道及其“壳,”物质排放,以及等离子体中的冲击波。该技术使得可以在短(长度≈5mm)铜和直径为100-150μm的爆炸期间在排出轴上的等离子体中的次级冲击波在〜100 j的储存能量下的直径为100-150μm。在等离子体中累积的瞬间,在排出轴上形成具有最小尺寸约为0.5mm的“热点”。它可以是窄束相干辐射的来源,具有10-30kev的X射线光子能量。基于由电线爆炸发起的放电中的Z -pinch现象的规律来讨论累积机制。

著录项

  • 来源
    《Technical physics》 |2018年第8期|共14页
  • 作者

    N. V. Pletnev;

  • 作者单位

    Prokhorov General Physics Institute Russian Academy of Sciences;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 Tb13;
  • 关键词

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