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首页> 外文期刊>Acta Physica Polonica. A >MATERIALS MODIFICATIONS WITH CLUSTER BEAMS: BULK AND SURFACE MODIFICATIONS
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MATERIALS MODIFICATIONS WITH CLUSTER BEAMS: BULK AND SURFACE MODIFICATIONS

机译:集群梁的材料修改:体和表面修改

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摘要

It is now well accepted that electronic excitation and ionization arising from the slowing down of swift heavy ions can lead to structural modi- fications in some metallic targets as it has been known for a long time in insulators. A rapid overview of some results obtained after GeV monoatomic heavy ion irradiations will be given. It will then be shown that new specific effects take place during irradiations with cluster ions. The projectiles used are energetic cluster beams: 10 to 40 MeV Au4 or C60 ions. The rates of linear energy deposition in electronic excitation are close for GeV monoatomic and for 10 MeV cluster ions, but the cluster ions have characteristic velocities which are one order of magnitude smaller than those of monoatomic ions. This leads to a strong spatial localization of the deposited energy during the slowing down process. The density of depossted energy can then reach values as high as a few 100 eV/atom. This very high density of energy deposited in the electronic system of the targets can lead to spectacular structural modifications generation in the vicinity of the ion trajectories of isolated or agglomerated point defects, new crystalline phases, amorphized regions. . . After an overview of such damage induced in bulk metals, semi- conductors, and insulators, we will discuss surface damage, consisting in the formation of bumps, craters, “ lava-flows” on the target surface.
机译:众所周知,由于迅速释放重离子而导致的电子激发和电离会导致某些金属靶中的结构改性,这在绝缘子中已经很久了。将简要概述GeV单原子重离子辐照后获得的一些结果。然后将显示在簇离子辐照期间发生了新的特定作用。所用的射弹是高能簇射束:10至40 MeV Au4或C60离子。对于GeV单原子和10 MeV簇离子,电子激发中的线性能量沉积速率接近,但是簇离子的特征速度比单原子离子小一个数量级。这导致减慢过程中沉积能量的强烈空间局部化。沉积能量的密度然后可以达到高达几个100 eV /原子的值。沉积在靶标电子系统中的非常高的能量密度可导致在孤立或团聚的点缺陷,新的结晶相,非晶化区域的离子轨迹附近产生惊人的结构修饰。 。 。在概述了散装金属,半导体和绝缘体中引起的这种破坏之后,我们将讨论表面破坏,包括在目标表面上形成的隆起,火山口和“熔岩流”。

著录项

  • 来源
    《Acta Physica Polonica. A》 |1999年第2期|181-196|共16页
  • 作者

    A. Dunlop.;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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