离子束分析

  • 网络ion beam analysis
离子束分析离子束分析
  1. 加速器离子束分析简介

    Introduction of Ion Beam Analysis

  2. 目前,在该束线上还进行离子束分析,如用8.8MeVHe~(++)进行高Tc超导体非卢瑟福散射实验等。

    At present , ion beam analysis , such as 8.8 MeV He + + non-Rutherford scattering on high Tc superconductor , is carried out at the third beam line as well .

  3. 离子束分析技术在抗核加固研究中的应用

    The applications of ion beam analysis in the investigations of radiation hardening

  4. 离子束分析研究金属中氦泡的退火行为

    The Annealing Behavior of Helium Bubble in Metals Studied by Ion Beam Analysis

  5. 离子束分析在艺术和考古学中的应用

    Ion beam techniques in arts and archaeology

  6. 双等源强流离子束分析

    Intense beam analysis of Duoplasmatron source

  7. 随着科技的进步,离子束分析技术已经广泛应用在材料科学等领域。

    With the development of the technology , the ion beam analysis ( IBA ) has been widely used in the material science .

  8. 粉煤灰表面形貌和组成的电子显微镜/能量色散谱、聚焦离子束分析

    Study on Both Shape and Chemical Composition at the Surface of Fly Ash by Scanning Electron Microscope , Focused Ion Beam , and Field Emission-Scanning Electron Microscope

  9. 离子束分析以其无损、快速和定量等优点,被广泛应用于薄膜成分和元素深度分布分析上。

    Due to the advantage of quantitive , non-destructive and quick and so on , ion beam analysis has been used widely in the determination of elements and their distribution in the materials .

  10. 文章介绍用离子束方法分析贮氢金属中氢同位素含量与分布的实验条件与设计,并分析各自的优、缺点。

    In this paper , experimental arrangements of measuring hydrogen isotope concentration and distribution in metal hydride with ion beam analysis methods were reported , and the advantage and disadvantage of different methods were analyzed too .

  11. 微光学阵列元件离子束刻蚀制作的分析与讨论

    Micro optics Arrays Device Etched by Ar Ion Beam

  12. 并对氢、氦、氮、氩等气体产生的离子束进行了磁分析,测定了离子束的质谱。

    The hydrogen , helium , nitrogen and argon beams thus produced were analyzed and their mass spectra were measured .

  13. 如通过测量电子束在材料表面或内部的能量损失谱,可以确定材料的电激发特性及电子气的密度:利用离子束背散射或离子束沟道分析技术,可以确定材料的成分及结构。

    For example , the excitation characteristics and the electron gas density of the material can be detected by measuring the electron energy loss spectrum , and the material component and structure can be obtained by ion backscattering or ion beam channelling technology .