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Integration of Thomson scattering and laser-induced fluorescence in ITER divertor

机译:汤姆逊散射和激光诱导的ITER偏滤器中的荧光的积分

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摘要

Divertor Thomson scattering (DTS) and laser-induced fluorescence (LIF) are both laser aided diagnostics well suited to combination with common probing and collecting optics that are the most sophisticated and expensive part of any ITER optical diagnostic system. The combination of DTS and LIF are used for simultaneous measurement of local electron (T-e, n(e)), ion (T-i, n(HeII)) and atom (n(HeII), n(H)((D,T))) parameters and provide basic information on rates of electron and ion processes to allow basic understanding of the physics of divertor plasma detachment. The measured parameters permit the calculation of rates of ionization and recombination using T-e, n(e), T-i, n(i), n(HeI) and n(H(D,T)); emission intensity-T-e, n(e), n(HeI) and n(H(D,T)); frictional force of the plasma flow due to collisions with neutrals-T-i, n(i), T-0, n(HeI) and n(H(D,T)) and pressure of the incoming plasma flow-T-e, n(e), T-i and The paper discusses the benefits of DTS and LIF integration, suggests new approaches to the estimation of DTS capability, LIF implementation and possibilities for further diagnostic development.
机译:Diversor Thomson散射(DTS)和激光诱导的荧光(LIF)都是激光辅助的诊断方法,非常适合与常见的探测和收集光学系统结合使用,这是ITER光学诊断系统中最复杂,最昂贵的部分。 DTS和LIF的组合用于同时测量局部电子(Te,n(e)),离子(Ti,n(HeII))和原子(n(HeII),n(H)((D,T) ))参数并提供有关电子和离子过程速率的基本信息,以使您对偏滤器等离子体脱离的物理学有基本的了解。测量的参数允许使用T-e,n(e),T-i,n(i),n(HeI)和n(H(D,T))计算电离和重组的速率;发射强度-T-e,n(e),n(HeI)和n(H(D,T));由于与中性离子Ti,n(i),T-0,n(HeI)和n(H(D,T))碰撞而产生的等离子流的摩擦力以及进入的等离子流的压力Te,n(e Ti和本文讨论了DTS和LIF集成的好处,提出了估算DTS能力,LIF实施以及进一步诊断开发可能性的新方法。

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