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First exploration of radiation temperatures of the laser spot re-emitting wall and entire hohlraum drive source

机译:首次探索激光光斑再发射壁和整个全息驱动源的辐射温度

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摘要

This study explores the radiation field temperatures introduced by the laser spot, the re-emitting wall in a hohlraum and the entire hohlraum drive source. This investigation, which is the first of its kind, is based on the radiation fluxes from the laser spot and the re-emitting wall, which have been accurately measured using time- and space-resolving flux detectors in a recent work, and additional flux data. The temperature difference between the laser spot and the entire hohlraum drive source was 6.08–35.35% of the temperature of the latter throughout the entire laser pulse, whilst that for the re-emitting wall was 3.90–12.81%. The radiation temperature of the cooler re-emitting wall had more influence on the temperature increase of the entire hohlraum drive source than the hot laser-spot temperature, which has been quantitatively discussed. Experimentally, we established the average distributions of the temperature fields of all the emitting sources, namely laser spot and re-emitting wall, of the irradiating fluxes on the capsule region in the hohlraum radiation field. This important progress in the exploration of radiation temperature distributions within a hohlraum will provide a foundation for determination of the irradiating radiation on the capsule and evaluation of capsule symmetry.
机译:这项研究探索了由激光光斑,白炽灯中的再发射壁和整个白炽灯驱动源引入的辐射场温度。这项研究尚属首次,它基于激光点和重发射壁的辐射通量,这些辐射通量是在最近的工作中使用时间和空间分辨通量检测器精确测量的,并且还有其他通量数据。在整个激光脉冲中,激光光斑与整个hohlraum驱动源之间的温差为后者的温度的6.08–35.35%,而重发射壁的温差为3.90–12.81%。较冷的再发射壁的辐射温度对整个全息驱动源的温度升高的影响要大于热的激光点温度,对此已进行了定量讨论。通过实验,我们建立了所有辐射源(即激光光斑和再发射壁)在大气压辐射场中胶囊区域上的辐射通量的温度场的平均分布。探索大孔内辐射温度分布的这一重要进展将为确定胶囊上的辐射量和评估胶囊的对称性提供基础。

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