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Imaging of spatial distributions of the millimeter wave intensity by using the Visible Continuum Radiation from a discharge in a Cs-Xe mixture. Part II: Demonstration of application capabilities of the technique

机译:通过使用CS-XE混合物中的排出的可见连续体辐射对毫米波强度的空间分布的成像。 第二部分:技术应用能力的示范

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The paper presents the second part of the review on a high-sensitive technique for time-resolved imaging and measurements of the 2D intensity profiles of millimeter-wave radiation by means of Visible Continuum Radiation emitted by the positive column of a medium-pressure Cs-Xe DC Discharge (VCRD method). The first part of the review was focused on the operating principles and fundamentals of this new technique [Plasma Phys. Rep. 43, 253 (2017)]. The second part of the review focuses on experiments demonstrating application of this imaging technique to measure the parameters of radiation at the output of moderate-power millimeter-wave sources. In particular, the output waveguide mode of a moderate-power W-band gyrotron with a pulsed magnetic field was identified and the relative powers of some spurious modes at the outputs of this gyrotron and a pulsed D-band orotron were evaluated. The paper also reviews applications of the VCRD technique for real-time imaging and nondestructive testing with a frame rate of higher than 10 fps by using millimeter waves. Shadow projection images of objects opaque and transparent for millimeter waves have been obtained using pulsed watt-scale millimeter waves for object illumination. Near video frame rate millimeter-wave shadowgraphy has been demonstrated. It is shown that this technique can be used for single-shot screening (including detection of concealed objects) and time-resolved imaging of time-dependent processes.
机译:本文介绍了对时间分辨成像的高敏感技术的第二部分,并通过中压CS的正塔发射的可见连续辐射来进行毫米波辐射的2D强度谱的测量。 XE DC放电(VCRD方法)。审查的第一部分专注于这种新技术的经营原则和基本原理[血浆物理。代表43,253(2017)]。审查的第二部分重点是在实验上表明应用该成像技术的应用,以测量中功率毫米波源的输出处的辐射参数。特别地,鉴定了具有脉冲磁场的中等功率W波段陀螺仪的输出波导模式,并且评估了该陀螺仪和脉冲D波段的输出处的一些杂散模式的相对功率。本文还评论了VCRD技术的应用,用于使用毫米波具有高于10 FP的帧速率的实时成像和非破坏性测试。已经使用脉冲瓦特级毫米波获得了对象照明的脉冲毫米波的对象的阴影投影图像。近视频帧速率毫米波影像造影已被证明。结果表明,该技术可用于单次筛选(包括隐藏物体的检测)和时间依赖过程的时间分辨成像。

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