首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >On a gas electron multiplier based synthetic diagnostic for soft x-ray tomography on WEST with focus on impurity transport studies
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On a gas electron multiplier based synthetic diagnostic for soft x-ray tomography on WEST with focus on impurity transport studies

机译:基于杂质传输研究的West X射线断层扫描基于气体电子乘法器的基于气体乘法器的合成诊断

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摘要

The tokamak WEST aims at testing ITER divertor high heat flux component technology in long pulse operation. Unfortunately, heavy impurities like tungsten (W) sputtered from the plasma facing components can pollute the plasma core by radiation cooling in the soft x-ray (SXR) range, which is detrimental for the energy confinement and plasma stability. SXR diagnostics give valuable information to monitor impurities and study their transport. The WEST SXR diagnostic is composed of two new cameras based on the Gas Electron Multiplier (GEM) technology. The WEST GEM cameras will be used for impurity transport studies by performing 2D tomographic reconstructions with spectral resolution in tunable energy bands. In this paper, we characterize the GEM spectral response and investigate Wdensity reconstruction thanks to a synthetic diagnostic recently developed and coupled with a tomography algorithm based on the minimum Fisher information (MFI) inversion method. The synthetic diagnostic includes the SXR source from a given plasma scenario, the photoionization, electron cloud transport and avalanche in the detection volume using Magboltz, and tomographic reconstruction of the radiation from the GEM signal. Preliminary studies of the effect of transport on the W ionization equilibrium and on the reconstruction capabilities are also presented.
机译:Tokamak West旨在测试长脉冲操作的迭代vertor高热量通量部件技术。遗憾的是,从等离子体面向部件溅射的钨(W)等重的杂质可以通过软X射线(SXR)范围的辐射冷却来污染等离子体芯,这对能量限制和等离子体稳定性是有害的。 SXR诊断提供有价值的信息来监测杂质并研究其运输。 West SXR诊断由两个基于气体电子乘法器(GEM)技术的新相机组成。通过在可调谐能带中执行具有光谱分辨率的光谱分辨率,通过在可调谐能带中执行杂质传输研究,将用于杂质传输研究。在本文中,我们表征了GEM光谱响应和研究WDENTY重建,由于最近开发的合成诊断和基于最小FISHER信息(MFI)反转方法的断层扫描算法。合成诊断包括来自给定的等离子体场景的SXR源,使用Magboltz的检测体积中的光相,电子云传输和雪崩,以及从GEM信号的辐射的断层切断重建。还提出了对运输对W电离平衡和重建能力的初步研究。

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