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高能离子的英文

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"高能离子"怎么读用"高能离子"造句

英文翻译手机手机版

  • energetic ion
  • high-energy ion

例句与用法

  • Ion beam induced surface modification of polymer was extensively discussed
    介绍了运用高能离子束对聚合物材料进行表面改性的新工艺。
  • The second population is pulled forwards by the propagating energetic electrons . the third energetic ion population emerg
    研究了前、后表面等离子体密度标长对高能离子产生的影响。
  • Ion beam processing improved on chemical and physical properties such as conductivity , surface hardness and wear resistance
    聚合物材料经高能离子注入后其电导率、表面硬度、耐磨性等性能都得到了提高。
  • Its principle can be outlined as follows : the accelerator produces a beam of fast ions which directs through the foil , because of collisions with the foil atoms the fast ions may undergo further ionization , and they often emerge from the foil in excited electronic states
    其原理如下:加速器产生的高能离子束与碳箔相碰撞而失去电子,同时剩余电子被激发到高激发态,在随后的退激过程中发射谱线,通过研究这些谱线可以得到原子的能级结构。
  • And we consider sufficiently all kinds of factors , such as conductance of tube , leak and deflate of system , pump speed , ionization and re - ionization of high - energy ion taking place in the process of transmission . furthermore , we take two ways to discuss pressure distribution of cell
    在系统轴线上压力分布分析过程中,综合考虑了管道的流导、系统的漏气和放气、泵的抽速、高能离子在管道内漂移过程中发生的电离和再电离等因素的影响。
  • The generation of energetic ions during the interaction of a linear - polarized ultra - short ultra - intense laser pulse with solid targets are examined by particle simulation . three energetic ion populations are observed and the acceleration mechanisms are analyzed , respectively . the first population is pulled out from the target by the electron jet in front of the target
    模拟观察到三群高能离子的产生,并对其加速机制一一进行了分析:在靶的前部,向外喷射的高能电子在靶前形成电子云,将一部分离子拉出靶面,形成第一群高能离子;激光驱动大量高能电子向靶内输运,这些电子牵引靶前部的离子向前加速,形成第二群高能离子:高能电子很快穿透靶,在靶后形成电子云,加速靶后表面处的离子,形成第三群高能离子。
  • This thesis is devoted to studying those issues relevant to the interaction of ultra - short ultra - intense laser pulses with overdense plasmas , including the generation and transport of relativistic electron beams , the generation of quasistatic magnetic field , the energetic ions production , and the influence of preplasma on electrons acceleration
    本文的研究目的是:利用粒子模拟方法,对超短超强激光脉冲与高密度等离子体相互作用中高能强电流的产生和输运、准静态磁场产生、高能离子产生等物理过程进行研究。
  • Plasma nitriding is an application way to metal surface and heating treatment based on the formed plasma by glow discharge . nitriding is a way of heating treatment , namely , metal accessory is put into activate nitrogen and the gas of low light pressure is ionized into energy electrons , high energy ions and high energy neutral atoms by the action of the electric field under a definite temperature and the time of the heat preservation
    等离子渗氮是利用辉光放电形成等离子体在金属表面,热处理方面的应用,渗氮是强化金属表面的一种热处理方法,是将金属零件置于活性氮的介质中,在一定温度和保温时间下,低光压气体在电场作用下使之电离产生能电子、高能离子和高能中性原子。
  • The article analyzes mainly the relation between pressure distribution of neutralizer and efficiency of neutralize describing neutralized rate of high - energy ion beam in the process of passing neutralizer . then , we accurately analyze pressure distribution in the axis direction of axis of nbi system , especially of pressure distribution curve of neutralizer
    主要分析了高能离子束通过中性化室的中性化效率与中性化室内压强的关系,给出了nbi系统从离子源引出端到托卡马克装置入口处的轴线上压强分布情况,尤其是中性化室内的压强分布曲线。
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