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一种用于氢原子从表面散射的超高真空装置。

An ultrahigh vacuum apparatus for H atom scattering from surfaces.

作者信息

Bünermann Oliver, Jiang Hongyan, Dorenkamp Yvonne, Auerbach Daniel J, Wodtke Alec M

机构信息

Institute for Physical Chemistry, Georg-August University of Göttingen, Tammannstr. 6, 37077 Göttingen, Germany.

出版信息

Rev Sci Instrum. 2018 Sep;89(9):094101. doi: 10.1063/1.5047674.

Abstract

We present an apparatus to study inelastic H or D atom scattering from surfaces under ultra-high vacuum conditions. The apparatus provides high resolution information on scattering energy and angular distributions by combining a photolysis-based atom source with Rydberg atom tagging time-of-flight. Using hydrogen halides as precursors, H and D atom beams can be formed with energies from 500 meV up to 7 eV, with an energy spread of down to 2 meV and an intensity of up to 10 atoms per pulse. A six-axis manipulator holds the sample and allows variation of both polar and azimuthal incidence angles. Surface temperature can be varied from 45 K up to 1500 K. The apparatus' energy resolution can be as high as 1000 and its angular resolution can be adjusted between 0.3° and 3°.

摘要

我们展示了一种用于在超高真空条件下研究表面非弹性H或D原子散射的装置。该装置通过将基于光解的原子源与里德堡原子标记飞行时间相结合,提供关于散射能量和角分布的高分辨率信息。使用卤化氢作为前驱体,可以形成能量范围从500毫电子伏特到7电子伏特的H和D原子束,能量展宽低至2毫电子伏特,强度高达每脉冲10个原子。一个六轴操纵器固定样品,并允许改变极入射角和方位入射角。表面温度可以在45K到1500K之间变化。该装置的能量分辨率可达1000,角分辨率可在0.3°至3°之间调节。

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