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用于文德斯坦7-X的重离子束探针,其测量能力如设计所预期。

Heavy ion beam probe for Wendelstein 7-X measurement capabilities as projected through its design.

作者信息

Demers D R, Crowley T P, Fimognari P J, Mora H Trimino, Grulke O, Laube R

机构信息

Xantho Technologies, LLC, Madison, Wisconsin 53705, USA.

Max-Planck Institute for Plasma Physics, Greifswald, MV 17491, Germany.

出版信息

Rev Sci Instrum. 2024 Aug 1;95(8). doi: 10.1063/5.0214907.

Abstract

A heavy ion beam probe (HIBP) diagnostic is being developed for studies of plasma equilibrium and turbulence in the optimized Wendelstein 7-X (W7-X) stellarator. Operation of W7-X has experimentally demonstrated that its optimized magnetic field results in improved neoclassical particle confinement and, as a result, turbulence is the predominant cause of energy transport. The HIBP will have the unique ability to provide experimental data needed to complement models of both neoclassical and turbulent transport. It will acquire direct measurements in the W7-X plasma interior of the electric potential (needed for understanding ambipolar particle flux) and fluctuations of electron density and potential (needed for understanding turbulence). The HIBP for W7-X will inject singly charged ion beams with energies of up to 2 MeV and is designed to access the upper cross section of the W7-X plasma. We use trajectory simulations to illustrate the plasma coverage that the diagnostic can achieve in the reference magnetic configurations of W7-X. We calculate beam signal levels, discuss anticipated measurement sensitivity of broadband fluctuations of electron density and plasma potential, and show how they depend on plasma density. We also discuss the diagnostic sensitivity to equilibrium plasma potential.

摘要

正在开发一种重离子束探针(HIBP)诊断装置,用于研究优化后的文德尔施泰因7-X(W7-X)托卡马克中的等离子体平衡和湍流。W7-X的运行已通过实验证明,其优化的磁场可改善新经典粒子约束,因此,湍流是能量传输的主要原因。HIBP将具有独特的能力,能够提供补充新经典和湍流传输模型所需的实验数据。它将在W7-X等离子体内部直接测量电势(理解双极粒子通量所需)以及电子密度和电势的波动(理解湍流所需)。用于W7-X的HIBP将注入能量高达2 MeV的单电荷离子束,其设计目的是探测W7-X等离子体的上部横截面。我们使用轨迹模拟来说明该诊断装置在W7-X的参考磁配置中所能实现的等离子体覆盖范围。我们计算束流信号水平,讨论电子密度和等离子体电势宽带波动的预期测量灵敏度,并展示它们如何依赖于等离子体密度。我们还讨论了该诊断装置对平衡等离子体电势的灵敏度。

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