通过 WEST 上的厚靶发射确定快速电子损耗和各向异性的平均能量

Tullio Barbui, Luis Delgado-Aparicio, Brentley Stratton, O. Chellaï, R. Dumont, Kenneth W Hill, N. Pablant, Yves Peysson
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引用次数: 0

摘要

介绍了一种利用多功能硬X射线探测器获得聚变等离子体中快速电子损耗平均能量的新方法。该方法基于测量由快速电子损耗与靶相互作用产生的钨在分流区的厚靶发射,并通过蒙特卡洛代码模拟电子束与固体靶之间的相互作用来建立钨光谱模型。通过比较实验发射和合成发射,确定了快速电子损耗的平均能量。结果表明,在 WEST 的较低混合电流驱动放电过程中,快速电子损耗的平均能量为 90-140 keV,仅占靶上总热流量的 2%。此外,在 WEST 核心和边缘等离子体中首次探测到了方向相反的各向异性硬 X 射线发射。这是由于两种不同的快速电子群向前峰发射所致:内核的同流快速电子和内撞击点的逆流快速电子损耗。鉴于未来的实验(如热核实验堆)中电子回旋电流驱动将产生快速电子群,该技术可作为快速电子损耗的实时监测器,并最终为电流驱动产生的致动器提供信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of the mean energy of fast electron losses and anisotropies through thick-target emission on WEST
A new method to obtain the mean energy of fast electron losses in fusion plasmas using a versatile multi-energy hard x-ray detector is presented. The method is based on measuring the thick-target emission of tungsten in the divertor region produced by fast electron losses interacting with the target and modeling the tungsten spectra by a Monte Carlo code which simulates the interaction between a beam of electrons and a solid target. The mean energy of the fast electron losses is determined through the comparison between the experimental and synthetic emission. The results show that fast electron losses during lower hybrid current drive discharges at WEST have a mean energy of 90-140 keV and represent only 2% of the total heat flux at the target. Additionally, anisotropic hard x-ray emission has been detected for the first time at the WEST core and edge plasma, with opposite directions. It is due to the forward-peak emission of two distinctive populations of fast electrons: co-current fast electrons in the core and counter-current fast electron losses at the inner strike point. In view of future experiments like ITER where electron cyclotron current drive will generate a fast electron population, this technique could serve as a real-time monitor of fast electron losses and eventually feed an actuator on the current drive generation.
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