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The CXRS diagnostic for ITER and the CXRS-Pilot Experiment on TEXTOR

机译:TERER和CXRS-PILOT实验的CXRS诊断

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Charge eXchange Recombination Spectroscopy (CXRS) will play a crucial role in the diagnosing of burning plasmas: items like helium ash, transport barriers, impurity content or fuel ratio can all be assessed with CXRS. In fact this is the only direct method to obtain information about the light impurity ions, such as temperature, concentrations and rotation, in the core of the plasma. Two of such systems are foreseen at ITER, one in the upper port plug and one on the equatorial level, both viewing the 100 keV diagnostic H-beam.Challenges for this diagnostic development project are: constructing a mirror close to the plasma able to keep its reflectivity under the extreme bombardment by neutrons, erosion by fast neutrals and deposition of sputtered material, design of an optical labyrinth with well enough neutron shielding, developing spectrometers with a throughput about a factor 100 larger than on present day devices, with a similar or better dispersion, calibration and alignment techniques and last but not least, finding ways to obtain the physics relevant information from the measured complicated spectra in real time.With all these issues in mind, an ITER-CXRS pilot experiment has been developed and became operational on the TEXTOR tokamak, to address some of the above aspects. The results of this show the feasibility and the sensitivity of the ITER system: the simulation code for ITER signal levels could be verified, the sensitivity to the current profile has been tested, the beam emission has been compared to beam attenuation calculations and used to obtain absolute impurity concentrations and a high throughput spectrometer became operational.
机译:电荷交换重组光谱(CXRS)将在燃烧等离子体诊断中发挥关键作用:氦灰,运输障碍,杂质含量或燃料比等项目都可以用CXR评估。事实上,这是在等离子体的核心中获取有关光杂质离子的信息的唯一直接方法,例如温度,浓度和旋转。两个这样的系统在迭代中预见,一个在上端口插头中的一个,一个在赤道水平上,两个诊断开发项目的校验诊断项目都是:构建靠近能够保持的等离子体的镜子其在极端轰击下的反射率,通过快速中性和溅射材料的沉积,具有足够良好的中子屏蔽的光学迷宫的沉积,具有比当地设备大的吞吐量的光谱仪,具有相似的或更好的分散,校准和对准技术和最后但并非最不重要的是,找到从测量的复杂光谱实时获取物理相关信息的方法。在所有这些问题上,已经开发了一个ITER-CXRS试点实验并成为运营Texor Tokamak,解决一些上述方面。这表明它的可行性和ITER系统的灵敏度:可以验证迭代信号电平的仿真代码,已经测试了对当前配置文件的敏感性,已经测试了光束发射与光束衰减计算并用于获得绝对杂质浓度和高通量光谱仪成为可操作的。

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