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AN INVESTIGATION OF ELECTROMAGNETIC WAVE PROPAGATION IN PLASMA BY SHOCK TUBE

机译:用激波管研究等离子体中电磁波的传播。

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摘要

This paper presents the electromagnetic wave propagation characteristics in plasma and the attenuation coefficients of the microwave in terms of the parameters ne, v, ω, L, ωb. The φ800 mm high temperature shock tube has been used to produce a uniform plasma. In order to get the attenuation of the electromagnetic wave through the plasma behind a shock wave, the microwave transmission has been used to measure the relative change of the wave power. The working frequency is f = (2 ~ 35) GHz (ω = 2π f, wave length λ = 15 cm ~ 8 mm). The electron density in the plasma is ne = (3 × 1010 ~ 1× 1014) cm-3. The collision frequency v = (1× 10s ~ 6 × 1010)Hz. The thickness of the plasma layer L = (2 ~ 80) cm. The electron circular frequency ωb = eBo/me, magnetic flux density B0 = (0 ~ 0.84)T. The experimental results show that when the plasma layer is thick (such as L/λ≥ 10), the correlation between the attenuation coefficients of the electromagnetic waves and the parameters ne, v, ω, L determined from the measurements are in good agreement with the theoretical predictions of electromagnetic wave propagations in the uniform infinite plasma. When the plasma layer is thin (such as when both L and λ are of the same order), the theoretical results are only in a qualitative agreement with the experimental observations in the present parameter range,but the formula of the electromagnetic wave propagation theory in an uniform infinite plasma can not be used for quantitative computations of the correlation between the attenuation coefficients and the parameters ne, v, ω, L. In fact, if ω<ωp, v2 <<ω2, the power attenuations K of the electromagnetic waves obtained from the measurements in the thin-layer plasma are much smaller than those of the theoretical predictions. On the other hand, if ω>ωp, v2 <<ω2 (just v ≈ f), the measurements are much larger than the theoretical results. Also, we have measured the electromagnetic wave power attenuation value under the magnetic field and without a magnetic field. The result indicates that the value measured under the magnetic field shows a distinct improvement.
机译:本文根据参数ne,v,ω,L,ωb给出了等离子体中电磁波的传播特性和微波的衰减系数。 φ800mm高温冲击管已用于产生均匀的等离子体。为了获得在冲击波之后通过等离子体的电磁波的衰减,已使用微波传输来测量波功率的相对变化。工作频率为f =(2〜35)GHz(ω=2πf,波长λ= 15 cm〜8 mm)。等离子体中的电子密度为ne =(3×1010〜1×1014)cm-3。碰撞频率v =(1×10s〜6×1010)Hz。等离子体层的厚度L =(2〜80)cm。电子圆频率ωb= eBo / me,磁通密度B0 =(0〜0.84)T。实验结果表明,当等离子层较厚时(例如L /λ≥10),电磁波的衰减系数与由测量确定的参数ne,v,ω,L之间的相关性与均匀无限等离子体中电磁波传播的理论预测。当等离子层很薄时(例如当L和λ相同时),理论结果与实验观测值在当前参数范围内只是定性一致,而电磁波传播理论的公式是均匀的无限等离子不能用于衰减系数与参数ne,v,ω,L之间的相关性的定量计算。实际上,如果ω<ωp,v2 <<ω2,则电磁波的功率衰减K从薄层等离子体的测量中获得的结果远小于理论预测的结果。另一方面,如果ω>ωp,v2 <<ω2(仅v≈f),则测量结果远大于理论结果。另外,我们已经测量了在磁场下和没有磁场下的电磁波功率衰减值。结果表明,在磁场下测得的值显示出明显的改善。

著录项

  • 来源
    《力学学报:英文版》 |2004年第003期|212-218|共7页
  • 作者单位

    Laboratory of High Temperature Gas Dynamics, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China;

    Laboratory of High Temperature Gas Dynamics, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China;

    Laboratory of High Temperature Gas Dynamics, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China;

    Laboratory of High Temperature Gas Dynamics, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China;

    Laboratory of High Temperature Gas Dynamics, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 力学;
  • 关键词

    microwave; plasma; shock tube;

    机译:微波;等离子体;冲击管;
  • 入库时间 2022-08-19 03:49:55
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