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Experiments with a plasma-filled rod-pinch diode on the MIG generator

机译:在MIG发生器上使用填充等离子体的棒形捏合二极管进行实验

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摘要

Experimental data for creating an X-ray source several millimeters in size on the basis of a plasmafilled rod-pinch diode are reported. Experiments are carried out on the MIG high-current generator. A voltage pulse applied to the diode is sharpened and shortened by injecting plasma into the interelectrode gap up to the plasma-filled diode. Radiation extraction from the vacuum chamber in the paraxial direction is provided by inverting the positions of the cathode and anode using a post-hole vacuum convolute. It is demonstrated that the energy of a low-impedance high-current generator can be deposited with a high efficiency into an electron beam focused on the 1-mm~2 tip of the rod-shaped anode. With a tapered tungsten rod 1.5 mm in diameter used as an anode, a pulsed X-ray source about 1 mm in size generating 30-ns-long pulses is obtained. The absorbed dose per pulse measured with a LiF thermoluminescent dosimeter behind a 5-mm-thick aluminum screen 1 m away from the source reaches 0.042 Gy.
机译:报告了基于填充等离子的杆捏二极管产生几毫米大小的X射线源的实验数据。在MIG大电流发生器上进行了实验。通过将等离子体注入到电极间的间隙中直至等离子体填充的二极管,可以使施加到二极管的电压脉冲锐化和缩短。通过使用孔后真空旋流器反转阴极和阳极的位置,可以从真空腔沿近轴方向提取辐射。结果表明,低阻抗大电流发生器的能量可以高效地沉积到聚焦在棒状阳极的1-mm〜2尖端的电子束中。将直径为1.5 mm的锥形钨棒用作阳极,可获得大小约为1 mm的脉冲X射线源,产生30 ns长的脉冲。用LiF热发光剂量计在距源1 m处的5毫米厚铝屏后面测量的每个脉冲的吸收剂量达到0.042 Gy。

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  • 来源
    《Technical physics》 |2011年第7期|共6页
  • 作者

    Sorokin S.A.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 Tb13;
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