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New developments in JET neutron, γ-ray and particle diagnostics with relevance to ITER

机译:与ITER相关的JET中子,γ射线和粒子诊断的新进展

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Some recent JET campaigns, with the introduction of a trace amount (n_T_D < 5%) of tritium into D plasmas and third harmonic ICRH acceleration of ~4He, provided unique opportunities to test 'burning plasma' diagnostics. In particular, new approaches and techniques were investigated for the detection of neutrons, α particles and the fuel mixture. With regard to neutron detection, the recent activity covered aspects such as calibration and cross validation of the diagnostics, measurement of the spatial distribution of the neutrons, particle transport and neutron spectrometry. The first tests of some new neutron detection technologies were also undertaken during the Trace Tritium Experiment campaign. To improve JET's diagnostic capability in the field of α particles, a significant development programme was devoted to the measurement of their confinement and imaging with γ-ray spectroscopy. A new approach for the fusion community to measuring the fast ion losses, based on the activation technique, was also attempted for the first time on JET. An assessment of the neutral particle analyser's potential to determine the fuel mixture and the particle transport coefficients is under way.
机译:最近的一些JET运动,在D等离子体中引入了痕量(n_T / n_D <5%)的and,并且三次谐波ICRH加速度约为4He,这为测试“燃烧等离子体”诊断提供了独特的机会。特别是,研究了用于检测中子,α颗粒和燃料混合物的新方法和技术。关于中子检测,最近的活动涉及以下方面,例如诊断的校准和交叉验证,中子空间分布的测量,粒子传输和中子光谱学。在痕量Tri实验活动期间,还进行了一些新的中子探测技术的首次测试。为了提高JET在α粒子领域的诊断能力,一项重要的开发计划致力于用γ射线光谱法测量其约束和成像。还首次在JET上尝试了一种基于激活技术的融合社区测量快速离子损失的新方法。目前正在评估中性粒子分析仪确定燃料混合物和粒子传输系数的潜力。

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