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Visible wide-angle view imaging system for the first plasma on the HL-2M tokamak

机译:用于HL-2M Tokamak上第一等离子体的可见广角视图成像系统

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摘要

The wide-angle view imaging system, in terms of a tangential view diagnostic with field of view (FOV) of 56.8 degrees and a downward-looking diagnostic from the top of the machine with FOV of 94.7 degrees, has been newly constructed for the first plasma of the HL-2M tokamak achieved in December 2020. Its mission in this stage is to monitor the plasma evolution during its startup, sustainment, and disruption in the visible spectral range as well as the plasma-wall interaction. For the latter ultrawide view diagnostic, nearly three-quarters of the divertor region and half the area of the inner wall are in the view range. Both the diagnostics are characterized by a similar optical structure, i.e., the light emission from the plasma is collected by a front-end lens and transferred through an imaging fiber bundle to the camera. This optical structure is suitable for application in the complex tokamak environment mainly because the fiber bundle is flexible. Photos of glow discharges are acquired prior to the first plasma for testing the FOVs in the vacuum vessel. The spatial resolution is similar to 4 mm for the tangential view diagnostic and similar to 10 mm for the downward-looking diagnostic. The temporal resolutions, ranging from 90 to 360 Hz by changing the region of interest or binning acquisition mode of the color camera, are applied to record the plasma evolutions and/or dust creation events during the first plasma campaign. (C) 2021 Optical Society of America
机译:为2020年12月实现的HL-2M托卡马克装置的第一个等离子体新建了广角成像系统,包括56.8度的切向视野诊断和94.7度的俯视视野诊断。该阶段的任务是监测等离子体在可见光谱范围内的启动、维持和破坏过程中的演变,以及等离子体-壁相互作用。对于后一种超宽视野诊断,近四分之三的偏滤器区域和一半的内壁区域在视野范围内。这两种诊断都具有相似的光学结构,即等离子体的光发射由前端透镜收集,并通过成像光纤束传输到相机。这种光学结构主要是因为光纤束是柔性的,适合在复杂的托卡马克环境中应用。辉光放电的照片是在第一次等离子体之前获取的,用于测试真空容器中的FOV。对于切向视图诊断,空间分辨率类似于4mm,而对于俯视诊断,空间分辨率类似于10mm。通过改变感兴趣的区域或彩色摄像机的装箱采集模式,时间分辨率从90到360 Hz不等,用于记录第一次等离子体运动期间的等离子体演变和/或灰尘产生事件。(2021)美国光学学会

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  • 来源
    《Applied optics》 |2021年第11期|共6页
  • 作者单位

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

    Southwestern Inst Phys Chengdu 610041 Peoples R China;

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  • 正文语种 eng
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