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Observation of dynamics and modification of solid surface using a picosecond soft x-ray laser

机译:皮秒软X射线激光观察固体表面的动力学和改性

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摘要

Short pulse x-ray sources are widely used as probing beams for new material development and non-destructive x-ray imaging. The high quality soft x-ray laser (SXRL) source enables us to achieve quite high spatial-resolution as a probe and quite intense x-ray as a pump. As an application using the SXRL, we have observed the spallative ablation process by the interaction with SXRL or femto-second (fs) laser. The dynamical processes of the SXRL and/or the fs laser-induced surface modifications come to attract much attention for the micro processing. However, it is difficult to observe the spallative ablation dynamics, because of non-repetitive, irreversible and rapid phenomena in a small feature size. In the case with SXRL irradiation (13.9 nm, 7ps, ~50 mJ/cm~2), we have observed the damage structures and the optical emission from the ablated materials. When focused SXRL pulses were have been irradiated onto the metal surface, we have confirmed damage structures, however no optical emission signal during SXRL ablation could be observed. The electron temperature is estimated to be around a few eV at the ablated surface. In the case with fs laser irradiation (795 nm, 80fs, ~1.5 J/cm~2), we have observed the surface morphology of fs laser ablation by the SXRL interferometer and SXRL reflectometer. The time resolved image of nano-scaled ablation dynamics of tungsten surface was observed. The numerical simulation study is underway by using a molecular dynamics code. These results lead not only to understanding the full process of the interaction with the SXRL and/or fs laser, but also to candidate the material of the first wall of magnetic confinement fusion reactors. We also described a preliminary study of radiation effect on culture cells irradiated with the SXRL. Our study demonstrated for the first time that the SXRL induced the DNA double strand breaks.
机译:短脉冲X射线源被广泛用作新材料开发和无损X射线成像的探测束。高质量的软X射线激光(SXRL)光源使我们能够实现很高的空间分辨率(作为探针)和非常强的X射线(作为泵浦)。作为使用SXRL的应用程序,我们已经通过与SXRL或飞秒(fs)激光的相互作用观察到了剥落过程。 SXRL和/或fs激光诱导的表面改性的动力学过程开始引起微加工的广泛关注。然而,由于小特征尺寸中的非重复性,不可逆性和快速现象,很难观察到剥落的消融动力学。在SXRL辐照(13.9 nm,7ps,〜50 mJ / cm〜2)的情况下,我们观察到了烧蚀材料的损伤结构和光发射。当聚焦的SXRL脉冲被照射到金属表面上时,我们已经确认了损伤结构,但是在SXRL烧蚀过程中没有观察到光发射信号。估计在烧蚀表面的电子温度约为几个eV。在fs激光辐照(795 nm,80fs,〜1.5 J / cm〜2)的情况下,我们通过SXRL干涉仪和SXRL反射仪观察了fs激光烧蚀的表面形态。观察到了钨表面纳米尺度消融动力学的时间分辨图像。通过使用分子动力学代码正在进行数值模拟研究。这些结果不仅导致了解与SXRL和/或fs激光器相互作用的完整过程,而且使候选材料成为磁约束聚变反应堆第一壁的材料。我们还描述了对用SXRL辐射的培养细胞进行辐射效应的初步研究。我们的研究首次证明了SXRL诱导了DNA双链断裂。

著录项

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

    Quantum Beam Science Directorate, Japan Atomic Energy Agency, Kyoto 619-0215, Japan;

    Quantum Beam Science Directorate, Japan Atomic Energy Agency, Kyoto 619-0215, Japan;

    Quantum Beam Science Directorate, Japan Atomic Energy Agency, Kyoto 619-0215, Japan;

    Quantum Beam Science Directorate, Japan Atomic Energy Agency, Kyoto 619-0215, Japan;

    Institute for Solid State Physics, The University of Tokyo, Kashiwanoha, Kashiwa-shi, Chiba 277-8581, Japan;

    Institute for Solid State Physics, The University of Tokyo, Kashiwanoha, Kashiwa-shi, Chiba 277-8581, Japan;

    Department of Aerospace Engineering, Tohoku University, 6-6-01 Aramaki-Aza-Aoba, Aoba-ku, Sendai 980-8579, Japan;

    Department of Helical Plasma research, National Institute for Fusion Science (NIFS) 322-6 Oroshi-cho, Toki city, Gifu 509-5292, Japan;

    Research Center for Charged Particle Therapy, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba, 263-8555, 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, 1-A, Akademika Semenova av.,Chernogolovka, Moscow Region 142432, Russia;

    Quantum Beam Science Directorate, Japan Atomic Energy Agency, 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

    Femto-second laser ablation; surface modification; soft x-ray laser interferometer; pump and probe experiment; Radiation effect;

    机译:飞秒激光烧蚀;表面改性;软X射线激光干涉仪;泵和探针实验;辐射效应;

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