带电粒子与绝缘毛细管靶的相互作用——导向效应

IF 8.7 2区 工程技术 Q1 CHEMISTRY, PHYSICAL Progress in Surface Science Pub Date : 2013-08-01 DOI:10.1016/j.progsurf.2013.06.001
Christoph Lemell , Joachim Burgdörfer , Friedrich Aumayr
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引用次数: 59

摘要

2002年,Stolterfoht和他的同事发现了带电粒子通过微观毛细血管以及最近发现的宏观毛细血管的显著效应。在初始充电阶段之后,一束带电粒子进入绝缘毛细管,可以沿着倾斜的毛细管轴有效地引导。这种效应是由毛细管壁的自组织带电引起的,它随后静电偏转离子,从而抑制了与毛细管壁的紧密碰撞。事实上,在带多重电荷的抛射离子的情况下,通过毛细管的抛射离子保持其初始电荷状态,这表明离子从未接触内壁。我们将回顾这一现象的现有实验数据和理论模型,以及过去10年来收集的高能带电粒子的类似指导过程。
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Interaction of charged particles with insulating capillary targets – The guiding effect

The guiding of charged particles through microscopic and, more recently, also macroscopic capillaries is a remarkable effect discovered in 2002 by Stolterfoht and coworkers. After an initial charge-up phase, a beam of charged particles entering an insulating capillary can be effectively steered along the tilted capillary axis. The effect results from self-organized charge-up of the capillary wall which subsequently deflects ions electrostatically thereby inhibiting close collisions with the capillary walls. Indeed, in the case of multiply charged projectile ions the projectiles transmitted through the capillary keep their initial charge state indicating that the ions never touched the inner walls. We will review both the existing experimental data as well as theoretical models for this phenomenon and similar guiding processes for energetic charged particles collected over the past 10 years.

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来源期刊
Progress in Surface Science
Progress in Surface Science 工程技术-物理:凝聚态物理
CiteScore
11.30
自引率
0.00%
发文量
10
审稿时长
3 months
期刊介绍: Progress in Surface Science publishes progress reports and review articles by invited authors of international stature. The papers are aimed at surface scientists and cover various aspects of surface science. Papers in the new section Progress Highlights, are more concise and general at the same time, and are aimed at all scientists. Because of the transdisciplinary nature of surface science, topics are chosen for their timeliness from across the wide spectrum of scientific and engineering subjects. The journal strives to promote the exchange of ideas between surface scientists in the various areas. Authors are encouraged to write articles that are of relevance and interest to both established surface scientists and newcomers in the field.
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