论文标题

一种新型的氢光谱技术,用于推断出分离条件下等离子体 - 分子相互作用对功率和颗粒平衡的作用

A novel hydrogenic spectroscopic technique for inferring the role of plasma-molecule interaction on power and particle balance during detached conditions

论文作者

Verhaegh, K, Lipschultz, B, Bowman, C, Duval, B P, Fantz, U, Fil, A, Harrison, J R, Moulton, D, Myatra, O, Wünderlich, D, Federici, F, Gahle, D S, Perek, A, Wensing, M, team, the TCV, team, the EuroFusion MST1

论文摘要

脱离是减少靶热沉积的重要机制,是通过降低功率,粒子和动量来实现的。通过等离子体原子和血浆 - 分子相互作用诱导。这些反应如何准确促进脱离的实验研究受到限制。在这项工作中,我们研究了一种新的光谱技术来利用氢Balmer线的测量值1)将Balmer线的发射与各种等离子体原子和等离子体 - 摩尔分子相互作用相互作用; 2)量化其对电离,重组和辐射功率损失的贡献。在支队期间,观察到的$Hα$排放通常会大大增加,这可能是涉及$ H_2^+$和/或$ H^ - $的等离子 - 分子相互作用的指标。我们的分析技术量化了由于等离子 - 分子相互作用而引起的$Hα$排放,并将其用于1)量化$ H_2^+$和/或$ H^ - $量化Balmer线排放贡献; 2)随后估计其所得的粒子下沉/来源和辐射功率损耗。使用分离的TCV和MAST-U SOLPS-拟合模拟的合成诊断技术验证其性能。该技术在TCV数据上的实验结果表明,在测得的总$Hα$与$Hα$发射的原子估计之间发生分叉,这表明由于与$ h_2^+$(and/os/os/os/or $ h^ - $)相互作用而存在额外的$Hα$。一个示例分析表明,氢线系列,甚至$lyα$以及中n级Balmer系列可能会受到等离子体 - 分子相互作用的显着影响。

Detachment, an important mechanism for reducing target heat deposition, is achieved through reductions in power, particle and momentum; which are induced through plasma-atom and plasma-molecule interactions. Experimental research in how those reactions precisely contribute to detachment is limited. In this work, we investigate a new spectroscopic technique to utilise Hydrogen Balmer line measurements to 1) disentangle the Balmer line emission from the various plasma-atom and plasma-molecule interactions; and 2) quantify their contributions to ionisation, recombination and radiative power losses. During detachment, the observed $Hα$ emission often strongly increases, which could be an indicator for plasma-molecule interactions involving $H_2^+$ and/or $H^-$. Our analysis technique quantifies the $Hα$ emission due to plasma-molecule interactions and uses this to 1) quantify the Balmer line emission contribution due to $H_2^+$ and/or $H^-$; 2) subsequently estimate its resulting particle sinks/sources and radiative power losses. Its performance is verified using synthetic diagnostic techniques of both detached TCV and MAST-U SOLPS-ITER simulations. Experimental results of this technique on TCV data show a bifurcation occurs between the measured total $Hα$ and the atomic estimate of $Hα$ emission, indicative of the presence of additional $Hα$ due to plasma-molecule interactions with $H_2^+$ (and/or $H^-$). An example analysis shows that the hydrogenic line series, even $Lyα$ as well as the medium-n Balmer lines can be significantly influenced by plasma-molecule interactions by tens of percent during which significant Molecular Activated Recombination (MAR) is expected.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源