Janzen A, Krenzer B, Heinz O, Zhou P, Thien D, Hanisch A, Meyer Zu Heringdorf F-J, von der Linde D, Horn von Hoegen M
Department of Physics and Centre for Nanointegration CeNIDE, University of Duisburg-Essen, 47048 Duisburg, Germany.
Rev Sci Instrum. 2007 Jan;78(1):013906. doi: 10.1063/1.2431088.
The construction of a pulsed electron gun for ultrafast reflection high-energy electron diffraction experiments at surfaces is reported. Special emphasis is placed on the characterization of the electron source: a photocathode, consisting of a 10 nm thin Au film deposited onto a sapphire substrate. Electron pulses are generated by the illumination of the film with ultraviolet laser pulses of femtosecond duration. The photoelectrons are emitted homogeneously across the photocathode with an energy distribution of 0.1 eV width. After leaving the Au film, the electrons are accelerated to kinetic energies of up to 15 keV. Focusing is accomplished by an electrostatic lens. The temporal resolution of the experiment is determined by the probing time of the electrons traveling across the surface which is about 30 ps. However, the duration of the electron pulses can be reduced to less than 6 ps.
报道了一种用于表面超快反射高能电子衍射实验的脉冲电子枪的构建。特别强调了电子源的特性:一个光电阴极,由沉积在蓝宝石衬底上的10纳米厚的金膜组成。通过用飞秒持续时间的紫外激光脉冲照射该膜来产生电子脉冲。光电子以均匀的方式从光电阴极发射出来,能量分布宽度为0.1电子伏特。离开金膜后,电子被加速到高达15千电子伏特的动能。聚焦是通过一个静电透镜来实现的。实验的时间分辨率由电子穿过表面的探测时间决定,约为30皮秒。然而,电子脉冲的持续时间可以缩短到小于6皮秒。