不同激光入口孔尺寸的充气虹吸管内部等离子体的运动和辐射研究

Liang Guo, Xin Li, Qi Li, Sanwei Li, Xin Hu, Jin Li, B. Deng, Keli Deng, Qiangqiang Wang, Z. Cao, Lifei Hou, Xinsen Che, H. Du, T. Xu, Xiaoan He, Zhi-chao Li, Xiaohua Jiang, Wei Jiang, C. Zheng, Wudi Zheng, Peng Song, Yongkun Ding, Dong Yang, Jia-Min Yang
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引用次数: 0

摘要

我们在 100 kJ 激光设备上进行了一项实验,以研究来自充气圆柱形穹隆内不同区域的等离子体的动力特征和辐射特性。这些穹隆设计成具有一个开口端和一个不同直径的激光入口孔(LEH),这将导致或不导致 LEH 的堵塞。将 X 射线条纹照相机设置为与光室轴线成 16 度,以便从开口端获取时间分辨 X 射线图像。根据这些图像,我们可以通过霍尔姆内部的等效视场,同时研究壁等离子体、电晕泡等离子体和 LEH 等离子体的演变过程。多组平面响应 X 射线探测器用于测量 X 射线通量。为了了解这些特性,我们使用了二维辐射流体力学代码来模拟实验结果。为了保证再现的准确性,我们在代码中应用了介子电子重组和两个参数修正。基于实验和模拟的对比,我们定量地理解了 LEH 的阻塞过程和其他等离子体的运动效应。校准后的代码有利于在附近的参数空间内设计充气霍尔姆,特别是 LEH 的极限尺寸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studies on the motion and radiation of interior plasmas in gas-filled hohlraums with different laser entrance hole sizes
An experiment on 100 kJ laser facility is performed to study the motive features and radiation properties of plasmas from different areas inside gas-filled cylindrical hohlraums. These hohlraums are designed to possess one open end and one laser entrance hole (LEH) with different diameters, which would or not result in the blocking of the LEH. An x-ray streak camera that is set at 16 degrees with respect to the hohlraum axis is applied to acquire the time-resolved x-ray images from the open end. Based on the images, we can study the evolutions of the wall plasma, corona bubble plasma and LEH plasma simultaneously through an equivalent view field of hohlraum interior. Multi-group flat response x-ray detectors are applied to measure the x-ray fluxes. In order to understand these characteristics, our two-dimensional radiation hydrodynamic code is used to simulate the experimental results. For the accuracy of reproduction, dielectronic recombination and two parameter corrections are applied in our code. Based on the comparison between experiments and simulations, we quantitatively understand the blocking process of LEH and the motion effects of other plasmas. The calibrated code is beneficial to design the gas-filled hohlraum in a nearby parameter space, especially the limit size of LEH.
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