Rajkovic I, Hallmann J, Grübel S, More R, Quevedo W, Petri M, Techert S
Department of Structural Dynamics of (Bio)chemical Systems, Max Planck Institute for Biophysical Chemistry, 37070 Göttingen, Germany.
Rev Sci Instrum. 2010 Apr;81(4):045105. doi: 10.1063/1.3327816.
In this paper we present a development of a multipurpose vacuum chamber which primal function is to be used in pump/probe experiments with free electron laser (FEL) radiation. The chamber is constructed for serial diffraction and serial spectroscopy allowing a fast exchange of samples during the measurement process. For the fast exchange of samples, liquid jet systems are used. Both applications, utilizing soft x-ray FEL pulses as pump and optical laser pulses as probe and vice versa are documented. Experiments with solid samples as well as the liquid jet samples are presented. When working with liquid jets, a system of automatically refilled liquid traps for capturing liquids has been developed in order to ensure stable vacuum conditions. Differential pumping stages are placed in between the FEL beamline and the experimental chamber so that working pressure in the chamber can be up to four orders of magnitude higher than the pressure in the FEL beamline.
在本文中,我们展示了一种多功能真空腔的研制成果,其主要功能是用于自由电子激光(FEL)辐射的泵浦/探测实验。该真空腔专为串行衍射和串行光谱学构建,允许在测量过程中快速更换样品。为了实现样品的快速更换,采用了液体喷射系统。记录了两种应用情况,即利用软X射线FEL脉冲作为泵浦、光学激光脉冲作为探测,以及反之亦然。展示了使用固体样品和液体喷射样品的实验。在使用液体喷射时,开发了一种用于捕获液体的自动重新填充液体阱系统,以确保稳定的真空条件。差分抽气级放置在FEL光束线和实验腔之间,使得腔内的工作压力可比FEL光束线中的压力高多达四个数量级。