论文标题

激光吸收光谱研究以表征负离子源蜘蛛的CS烤箱性能

Laser absorption spectroscopy studies to characterize Cs oven performances for the negative ion source SPIDER

论文作者

Barbisan, M., Cristofaro, S., Zampieri, L., Pasqualotto, R., Rizzolo, A.

论文摘要

当前在Consorzio RFX(意大利Padova)的中性束测试设施(NBTF)中,蜘蛛H-/D-离子源目前正在运行,以证明可能产生高达40a的负离子的可能性,其最大提取的电流密度为350 A/M2(H)/285 A/M2(d)和co-ext的最大提取的电流密度为350 a/m2(h)/285 a/m2(d)。这些性能是实现ITER中性束喷射器(NBI)所必需的,该束中性束喷射器(NBI)应通过高达1 MeV的负离子将16.7 MW传递到血浆中,然后将其注入ITER TOKAMAK。为了获得如此高的萃取电流密度和低共共共摘要,有必要降低加速度系统表面的工作函数,将面向源朝向源;这将通过用CS涂层涂层,并通常由三个烤箱蒸发。烤箱的功能已在NBTF托管的Cesium烤箱测试台(CAT)上进行了测试。该测试台配备了几种诊断,其中激光吸收光谱(LAS)诊断。使用可调激光二极管,LAS诊断沿沿视线的CS 852 nm D2线的高分辨率吸收光谱在基态下测量CS密度。本文描述了测试架和LAS诊断,以及要在蜘蛛中安装的烤箱的表征。本文还将研究由CS基态减小引起的系统密度低估效应,这是激光强度和CS密度的函数,以纠正密度评估的角度。

The SPIDER H-/D- ion source is currently in operation in the Neutral Beam Test facility (NBTF) at Consorzio RFX (Padova, Italy) to prove the possibility of generating up to 40 A of negative ions, with a maximum extracted current density of 350 A/m2 (H)/285 A/m2 (D) and a fraction of co-extracted electrons not greater than 0.5 (H)/1 (D). These performances are required for the realization of the ITER Neutral Beam Injector (NBI), which should deliver 16.7 MW to the plasma by means of negative ions accelerated up to 1 MeV and neutralized before being injected into the ITER tokamak. In order to obtain such high extracted current densities and low co-extracted electron fractions it is necessary to lower the work function of the surface of the acceleration system grid facing the source; this will be accomplished by coating the surfaces with Cs, routinely evaporated by three ovens. The functionality of the ovens has been tested at the CAesium oven Test Stand (CATS), hosted at NBTF. The test stand is equipped with several diagnostics, among which a Laser Absorption Spectroscopy (LAS) diagnostic. Using a tunable laser diode, the LAS diagnostic gets the high resolution absorption spectrum of the Cs 852 nm D2 line along a line of sight to measure Cs density at ground state. The paper describes the test stand and the LAS diagnostic, together with the characterization of the ovens to be installed in SPIDER. The paper will also study the systematic density underestimation effect caused by Cs ground state depopulation, as a function of laser intensity and of Cs density, in the perspective of correcting the density evaluation.

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