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Guided transmission of oxygen ions through Al2O3 nanocapillaries

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【作者】 陈益峰陈熙萌娄凤君徐进章邵剑雄孙光智王俊席发元尹永智王兴安徐俊奎崔莹丁宝卫

【Author】 Chen Yi-Feng,Chen Xi-Meng,Lou Feng-Jun,Xu Jin-Zhang,Shao Jian-Xiong,Sun Guang-Zhi,Wang Jun,Xi Fa-Yuan,Yin Yong-Zhi,Wang Xing-An,Xu Jun-Kui,Cui Ying,and Ding Bao-Wei School of Nuclear Science and Technology,Lanzhou University,Lanzhou 730000,China

【机构】 School of Nuclear Science and Technology,Lanzhou University

【摘要】 The transmissions of oxygen ions through Al2O3 nanocapillaries each 50 nm in diameter and 10 μm in length at a series of different tilt angles are measured,where the ions with energies ranging from 10 to 60 keV and charge states from 1 up to 6 are involved.The angular distribution and the transmission yields of transported ions are investigated.Our results indicate both the existence of a guiding effect when ions pass through the capillary and a significant dependence of the ion transmission on the energy and the charge state of the ions.The guiding effects are observed to be enhanced at lower projectile energies and higher charge states.Meanwhile,the results also exhibit that the transmission yields increase as the tilt angle decreases at a given energy and charge state.

【Abstract】 The transmissions of oxygen ions through Al2O3 nanocapillaries each 50 nm in diameter and 10 μm in length at a series of different tilt angles are measured,where the ions with energies ranging from 10 to 60 keV and charge states from 1 up to 6 are involved.The angular distribution and the transmission yields of transported ions are investigated.Our results indicate both the existence of a guiding effect when ions pass through the capillary and a significant dependence of the ion transmission on the energy and the charge state of the ions.The guiding effects are observed to be enhanced at lower projectile energies and higher charge states.Meanwhile,the results also exhibit that the transmission yields increase as the tilt angle decreases at a given energy and charge state.

【基金】 Project supported by the National Natural Science Foundation of China (Grant No 10775063)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2009年07期
  • 【分类号】O488
  • 【被引频次】5
  • 【下载频次】16
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