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EXPREMENTAL STUDY OF CLUSTER SIZE EFFECT WITH SIZE-SELECTED CLUSTER ION BEAM

机译:选型团簇离子束对团簇效应的实验研究

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摘要

A size-selected gas cluster ion beam (GCIB) system has been developed to study the size effects of energetic large cluster ion bombardments on a solid surface for the first time. This system equipped a permanent magnet with a magnetic flux density of 1.2 T. There is a sliding detector and sample holder on a guiding rail perpendicular to the incoming cluster beam axis. By locating a sample at a certain position, particular size of cluster ion can be irradiated continuously with affordable ion current density. When the total acceleration energy of Ar-GCIB was 5keV, both amorphous and oxide thickness on Si substrate increased with decreasing cluster size. This result showed good agreement with that obtained from molecular dynamics simulations.
机译:已开发出一种尺寸选择的气体团簇离子束(GCIB)系统来首次研究高能大团簇离子轰击在固体表面上的尺寸效应。该系统配备了磁通密度为1.2 T的永磁体。在垂直于入射束光束轴的导轨上有一个滑动检测器和样品架。通过将样品放置在某个位置,可以以可承受的离子电流密度连续照射特定大小的簇离子。当Ar-GCIB的总加速能量为5keV时,Si衬底上的非晶态和氧化物厚度都随着簇尺寸的减小而增加。该结果与从分子动力学模拟获得的结果吻合良好。

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