论文标题
垂直翻译的等离子体中失控的电子同步辐射
Runaway electron synchrotron radiation in a vertically translated plasma
论文作者
论文摘要
从tokamaks中观察到的同步加速器辐射取决于RE梁的位置和大小,RE能量和螺距分布以及观察者的位置。我们表明,垂直移动的失控电子光束在TCV Tokamak中扫过检测器的实验同步器图像与合成同步加速器诊断软软的预测非常吻合。该实验验证使构成理论的置信度为基于合成诊断的理论提供了基准测试和探测失控动态的理论模型。我们介绍了TCV中同步子测量值与均匀磁场中失控动力学动力学的预测的比较。我们发现,要解释检测到的同步加速器发射,需要明显的非倾斜角散射以及RES的径向运输。这种影响可能是由于磁扰动的存在而引起的,应在未来的TCV实验中进一步研究。
Synchrotron radiation observed from runaway electrons (REs) in tokamaks depends upon the position and size of the RE beam, the RE energy and pitch distributions, as well as the location of the observer. We show that experimental synchrotron images of a vertically moving runaway electron beam sweeping past the detector in the TCV tokamak agree well with predictions from the synthetic synchrotron diagnostic Soft. This experimental validation lends confidence to the theory underlying the synthetic diagnostics which are used for benchmarking theoretical models of and probing runaway dynamics. We present a comparison of synchrotron measurements in TCV with predictions of kinetic theory for runaway dynamics in uniform magnetic fields. We find that to explain the detected synchrotron emission, significant non-collisional pitch angle scattering as well as radial transport of REs would be needed. Such effects could be caused by the presence of magnetic perturbations, which should be further investigated in future TCV experiments.