论文标题

使用多光谱同步加速器图像在TCV中的失控分布函数重建的层析成像重建

Tomographic reconstruction of the runaway distribution function in TCV using multispectral synchrotron images

论文作者

Wijkamp, T. A., Perek, A., Decker, J., Duval, B., Hoppe, M., Papp, G., Sheikh, U. A., Classen, I. G. J., Jaspers, R. J. E., team, the TCV, team, the EUROfusion MST1

论文摘要

使用针对三个不同的波长间隔的过滤相机图像研究了在静止的TCV失控放电中观察到的同步子辐射。通过断层扫描过程,重建了这些相对论粒子的空间和动量分布的高动量,高螺距角部分。分布的实验估计对于验证和完善形成,衰减和运输模型的避免失控和缓解策略设计很重要。使用测试分布,可以证明,反转过程在相位区域中可准确地估计到几万%以内,这对同步子图像造成了最大的影响。我们发现,在发射光谱的不同部分中过滤的图像结合,可以扩大动量空间的探测部分,并减少重建误差。接下来,使用SART算法来获取有关选定TCV放电中时空失控动量分布的信息。发现动量分布可以放松雪崩呈指数衰减的轮廓。对于分布中最强烈的发射粒子,发现异常高的螺距角和径向谱向边缘增加。环形磁场纹波的俯仰角散射与这张图片一致。另一种解释是存在高频不稳定性,并结合了等离子体边缘的失控壳的形成。

Synchrotron radiation observed in a quiescent TCV runaway discharge is studied using filtered camera images targeting three distinct wavelength intervals. Through the tomographic SART procedure the high momentum, high pitch angle part of the spatial and momentum distribution of these relativistic particles is reconstructed. Experimental estimates of the distribution are important for verification and refinement of formation-, decay- and transport-models underlying runaway avoidance and mitigation strategy design. Using a test distribution it is demonstrated that the inversion procedure provides estimates accurate to within a few tens of percent in the region of phase-space contributing most to the synchrotron image. We find that combining images filtered around different parts of the emission spectrum widens the probed part of momentum-space and reduces reconstruction errors. Next, the SART algorithm is used to obtain information on the spatiotemporal runaway momentum distribution in a selected TCV discharge. The momentum distribution is found to relax towards an avalanche-like exponentially decaying profile. Anomalously high pitch angles and a radial profile increasing towards the edge are found for the most strongly emitting particles in the distribution. Pitch angle scattering by toroidal magnetic field ripple is consistent with this picture. An alternative explanation is the presence of high frequency instabilities in combination with the formation of a runaway shell at the edge of the plasma.

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