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Improvements of data quality of the LHD Thomson scattering diagnostics in high-temperature plasma experiments

机译:高温等离子体实验中LHD Thomson散射诊断程序的数据质量的提高

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摘要

In Large Helical Device (LHD) experiments, an electron temperature (Te) more than 15 keV has been observed by the yttrium-aluminum-garnet (YAG) laser Thomson scattering diagnostic. Since the LHD Thomson scattering system has been optimized for the temperature region, 50?eV ? Te ? 10?keV, the data quality becomes worse in the higher Te region exceeding 10 keV. In order to accurately determine Te in the LHD high-Te experiments, we tried to increase the laser pulse energy by simultaneously firing three lasers. The technique enables us to decrease the uncertainties in the measured Te. Another signal accumulation method was also tested. In addition, we estimated the influence of high-energy electrons on Te obtained by the LHD Thomson scattering system.
机译:在大型螺旋装置(LHD)实验中,通过钇铝石榴石(YAG)激光汤姆森散射诊断仪观察到电子温度(Te)超过15 keV。由于LHD Thomson散射系统已针对温度区域进行了优化,因此50?eV?特? 10?keV,在超过10keV的较高Te区域,数据质量变差。为了在LHD高Te实验中准确确定Te,我们尝试通过同时发射三个激光来增加激光脉冲能量。该技术使我们能够减少测得的Te的不确定性。还测试了另一种信号累积方法。此外,我们估计了高能电子对通过LHD Thomson散射系统获得的Te的影响。

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