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X射线激光Nd薄膜靶表面氧化特性研究
引用本文:吴永刚,陈玲燕,张哲,魏军明,秦树基,唐伟星.X射线激光Nd薄膜靶表面氧化特性研究[J].强激光与粒子束,2000,12(3):265-268.
作者姓名:吴永刚  陈玲燕  张哲  魏军明  秦树基  唐伟星
作者单位:同济大学波耳固体物理研究所, 上海200092
基金项目:国家863激光技术领域资助课题
摘    要: 利用石英晶体振荡技术测量了不同环境中稀土元素Nd薄膜靶表面氧化速率,用俄歇电子能谱,扫描电镜,X射线衍射,X射线光电子能谱分析了Nd薄膜表面氧化过程,发现保存环境对靶的表面氧化行为有重要影响。空气中水分是引起Nd快速氧化的关键因素。表面氧化层为团聚状的非晶结构,氧化物与金属的体各比较小可能是引起Nd薄膜较易氧化的原因。Nd薄膜靶表面覆盖有一层氢氧化物,其厚度按保存在真空、干燥空气和潮湿空气环境而依次递增。

关 键 词:X射线激光  稀土元素  Nd薄膜靶  氧化
文章编号:1001-4322(2000)03-0265-04
收稿时间:1900-01-01;
修稿时间:2000年1月19日

CHARACTERIZATION OF SURFACE OXIDATION OF Nd FILMX-RAY LASER TARGET
WU Yong-gang,CHEN Ling-yan,ZHANG Zhe,WEI Jun-ming,QIN Shu-ji,TANG Wei-xingPohl Institute of Solid State Physics,Tongji University,Shanghai.CHARACTERIZATION OF SURFACE OXIDATION OF Nd FILMX-RAY LASER TARGET[J].High Power Laser and Particle Beams,2000,12(3):265-268.
Authors:WU Yong-gang  CHEN Ling-yan  ZHANG Zhe  WEI Jun-ming  QIN Shu-ji  TANG Wei-xingPohl Institute of Solid State Physics  Tongji University  Shanghai
Institution:WU Yong-gang,CHEN Ling-yan,ZHANG Zhe,WEI Jun-ming,QIN Shu-ji,TANG Wei-xingPohl Institute of Solid State Physics,Tongji University,Shanghai 200092
Abstract:Quartz crystal oscillation technique was applied to measure the increase of oxide scale on Nd film targets and Auger electron spectroscopy was used to analyze the depth distribution of oxygen and neodymium. Scanning electron microscopy, X-ray diffraction and X-ray photonelectron spectroscopy were used to characterize oxide scale. Results show that the environment where Nd films were stored plays a great role in the oxidation behavior of the Nd films. Water contained in the atmosphere is the key factor for the rapid oxidation of the Nd film. The scale is amorphous and shows steamed bread like surface. The small ratio of the oxide volumn to the metal volumn may be the cause of the Nd inclining to oxidation. The scale is covered by a layer of hydroxide. the thickness of the hydroxide is the least for the films in vacuum, the second in dry air and the greatest in humid air.
Keywords:X-ray laser  rare-earth element  Nd film target  oxidation
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