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Diagnosis of physical parameters of fast particles in high power fusion plasmas with high resolution neutron and gamma-ray spectroscopy

机译:高分辨率中子和伽马射线光谱法诊断高功率聚变等离子体中快速粒子的物理参数

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High resolution neutron emission spectroscopy (NES) and gamma-ray spectroscopy (GRS) measurements of fast ions in high power fusion plasmas are reviewed. NES is a well established diagnostics of the velocity distribution of fast fuel ions and was recently used to investigate the interaction of energetic ions with MHD instabilities. High energy resolution GRS on fusion plasmas is a more recent application and was shown to provide information on the distribution function of fast minority ions accelerated by ICRH, such as ~4He and ~3He. Starting from measurements on today's high power D plasmas, fast ion measurements with NES and GRS in a DT burning plasma of next step tokamaks, such as ITER, are discussed. The enhanced neutron and gamma-ray fluxes expected on ITER will allow for time-resolved measurements of the fast fuel and minority ion dynamics in the ms time scale. The intensity of the alpha knock-on component in the 14 MeV neutron spectrum and of the 4.44 and 3.21 MeV gamma-ray peaks from the ~9Be(α,nγ)~(12)C reaction is studied as a diagnostics for the α particle slowing down distribution in a DT plasma. The results show that the two techniques are sensitive to different regions of the α particle phase space and thus provide complementary information.
机译:综述了高功率聚变等离子体中快离子的高分辨率中子发射光谱(NES)和伽马射线光谱(GRS)测量。 NES是快速燃料离子速度分布的公认诊断方法,最近用于研究高能离子与MHD不稳定性的相互作用。聚变等离子体上的高能量分辨率GRS是最近的一项应用,显示出可提供由ICRH加速的快速少数离子(例如〜4He和〜3He)的分布函数的信息。从对当今高功率D等离子体的测量开始,讨论了在下一步托卡马克(例如ITER)的DT燃烧等离子体中使用NES和GRS进行快速离子测量的方法。在ITER上预期的增强的中子和伽马射线通量将允许在ms时标内对快速燃料和少数离子动力学进行时间分辨测量。研究了14 MeV中子谱中α敲除分量的强度以及〜9Be(α,nγ)〜(12)C反应中4.44和3.21 MeVγ射线峰的强度,作为对α粒子的诊断降低了DT等离子体中的分布。结果表明,这两种技术对α粒子相空间的不同区域敏感,因此提供了补充信息。

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