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Low electron temperature in ablating materials formed by picosecond soft x-ray laser pulses

机译:皮秒软X射线激光脉冲形成的烧蚀材料中的电子温度低

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摘要

To study the ablation process induced by the soft x-ray laser pulse, we investigated the electron temperature of the ablating material. Focused soft x-ray laser pulses having a wavelength of 13.9 run and duration of 7 ps were irradiated onto the LiF, Al, and Cu surfaces, and we observed the optical emission from the surfaces by use of an optical camera. On sample surfaces, we could confirm damage structures, but no emission signal in the visible spectral range during ablation could be observed. Then, we estimated the electron temperature in the ablating matter. To consider the radiation from a heated layer, we supposed a black-body radiator as an object. The calculation result was that the electron temperature was estimated to be lower than 1 eV and the process duration was shorter than 1000 ps. The theoretical model calculation suggests the spallative ablation for the interaction between the soft x-ray laser and materials. The driving force for the spallation is an increasing pressure appearing in the heated layer, and the change of the surface is considered to be due to a splash of a molten layer. The model calculation predicts that the soft x-ray laser with the fluence around the ablation threshold can create an electron temperature around 1 eV in a material. The experimental result is in good accordance with the theoretical prediction. Our investigation implies that the spallative ablation occurs in the low electron temperature region of a non-equilibrium state of warm dense matter.
机译:为了研究软X射线激光脉冲引起的烧蚀过程,我们研究了烧蚀材料的电子温度。将具有13.9行程波长和7 ps持续时间的聚焦软X射线激光脉冲照射到LiF,Al和Cu表面上,我们使用光学相机观察了从表面发出的光。在样品表面上,我们可以确认损伤结构,但是在烧蚀过程中没有观察到可见光谱范围内的发射信号。然后,我们估计了烧蚀物质中的电子温度。为了考虑来自加热层的辐射,我们以黑体辐射器为对象。计算结果是,估计电子温度低于1 eV,过程持续时间短于1000 ps。理论模型计算表明,软X射线激光与材料之间的相互作用具有散裂性。剥落的驱动力是在加热层中出现的压力增加,并且表面的变化被认为是由于熔融层的飞溅所致。模型计算预测,能量密度在消融阈值附近的软X射线激光可以在材料中产生大约1 eV的电子温度。实验结果与理论预测吻合良好。我们的研究表明,散裂性剥蚀发生在温暖致密物质处于非平衡状态的低电子温度区域。

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  • 来源
  • 会议地点 San Diego CA(US)
  • 作者单位

    Japan Atomic Energy Agency, 8-1-7, Umemidai, Kizugawa, Kyoto 619-0215, Japan;

    Japan Atomic Energy Agency, 8-1-7, Umemidai, Kizugawa, Kyoto 619-0215, Japan;

    Japan Atomic Energy Agency, 8-1-7, Umemidai, Kizugawa, Kyoto 619-0215, Japan;

    Russian Academy of Sciences, 13-2, Izhorskaya Street, Moscow 125412, Russia,Osaka University, 1-1, Yamadaoka, Suita, Osaka 565-0871, Japan;

    Russian Academy of Sciences, 13-2, Izhorskaya Street, Moscow 125412, Russia,National Research Nuclear University, Moscow Engineering Physics Institute, 31, Kashirskoe Shosse, Moscow 115409, Russia;

    Russian Academy of Sciences, 13-2, Izhorskaya Street, Moscow 125412, Russia,Osaka University, 1-1, Yamadaoka, Suita, Osaka 565-0871, Japan;

    Russian Academy of Sciences, 1-A, Akademika Semenova av.,Chernogolovka, Moscow Region 142432, Russia;

    Japan Atomic Energy Agency, 8-1-7, Umemidai, Kizugawa, Kyoto 619-0215, Japan;

    Japan Atomic Energy Agency, 8-1-7, Umemidai, Kizugawa, Kyoto 619-0215, Japan;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    soft x-ray laser; laser ablation; laser produced plasma; electron temperature;

    机译:软X射线激光激光烧蚀激光产生的等离子体电子温度;

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