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Development of 2D GEM-based SXR plasma imaging for DTT device: Focus on readout structure

机译:DTT设备的2D基于Gem的SXR等离子体成像的研制:专注于读出结构

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Creation and development of a new diagnostics useful for future thermonuclear reactors and helpful in studying impurity profiles, MHD modes/localization, and imaging are among urgent tasks in plasma research field. Global SXR imaging for DTT device in support of power exhaust programme and its consecutive impact for plasma core is an example of applicability of such diagnostics. This contribution presents the results of the ongoing development of the elaborated plasma X-ray imaging technology focusing on the design of the relevant structure of readout electrode. In order to achieve that, the details on the expected plasma radiation for the selected scenario for DTT machine were assessed. Then, the spatial distribution of plasma radiation intensity flux that will be reaching the detector window of the GEM based detector was simulated. Taking it into account along with the physical properties of the detector, the spatial and temporal distributions of charge cloud that will be reaching the readout plane were evaluated. The special design of the readout structure has been proposed that fulfil critical conditions originated from technological and physical constraints. The final effectiveness of the GEM based detector was evaluated proving that such detector is well suited for an effective plasma radiation imaging.
机译:创建和开发对未来的热核反应器有用的新诊断,并有助于研究杂质简档,MHD模式/本地化和成像是等离子体研究领域的紧急任务。用于支持电源排气程的DTT设备的全局SXR成像及其对等离子体核心的连续影响是这种诊断的适用性。这一贡献介绍了勘探等离子体X射线成像技术的持续发展的结果,该技术的关注于读出电极的相关结构的设计。为了实现这一目标,评估了关于DTT机器所选场景的预期等离子体辐射的细节。然后,模拟了将达到基于基于基于Gem基于基于Gem的检测器的检测器窗口的等离子体辐射强度通量的空间分布。考虑到探测器的物理性质,评估将达到读出平面的电荷云的空间和时间分布。已经提出了读出结构的特殊设计,以实现源自技术和物理限制的关键条件。评估了基于Gem基于基于探测器的检测器的最终有效性,证明这种检测器非常适合于有效的等离子体辐射成像。

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