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Magnetic and X-ray Diagnostics for Plasma Position Measurements in the Ignition Experiment Ignitor

机译:点火实验点火器中等离子体位置测量的磁性和X射线诊断

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The ignition experiment Ignitor will produce high performance plasma regimes with neutron fluxes at the first wall comparable to those expected in power generating reactors (1015 n/ cm2/ s at the first wall). An appreciable degradation of the inorganic insulators surrounding the conductors is expected and the measurement of basic plasma parameters, such as plasma current and position, by electromagnetic diagnostics can become problematic. Thus an R&D program, aimed at the development of effective and affordable devices for electromagnetic diagnostics with higher damage threshold, is being carried out. Prototype diagnostic coils of different shapes have been manufactured, in collaboration with SALENTEC and Università di Lecce. At the same time, an alternative plasma position control method is being explored, based on the diffraction and detection of the soft X-ray radiation emitted, mostly by Molybdenum impurities, near the top or bottom of the plasma column, where the distance of the plasma last closed magnetic surface from the wall is only few millimeters. The underlying principles and general layout of the new system is essentially an adaptation of a 2-dimensional curved crystal spectrometer.
机译:点火实验点火器将在所述第一壁与那些预期在发电反应器(在第一壁1015牛顿/厘米2 /秒)产生具有中子通量高性能等离子体制度。围绕导体的无机绝缘体的明显降解预计和的基本等离子体参数,如等离子体电流和位置,通过电磁诊断测量可以成为问题。因此,一个R&d程序,目的是为具有较高的损伤阈值电磁诊断有效和负担得起的设备的发展,正在开展。原型不同形状的诊断线圈已经制造,在具有SALENTEC和UNIVERSITA莱切协作。同时,另一种等离子体的位置控制方法是被探索,基于软X射线辐射的发射的衍射和检测,主要由钼杂质,靠近等离子体柱的顶部或底部,的其中距离等离子体从壁最后闭合磁面是只有几毫米。的基本原则和新系统的总体布局基本上是一个2维弯曲晶体谱仪的适应。

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