Angewandte Physikalische Chemie, Universität Heidelberg, Im Neuenheimer Feld 253, D-69120 Heidelberg, Germany.
Ultramicroscopy. 2011 Jul;111(8):1131-6. doi: 10.1016/j.ultramic.2011.02.002. Epub 2011 Feb 12.
Single pulse imaging with radiation provided by free-electron laser sources is a promising approach towards X-ray microscopy, which is expected to provide high resolution images of biological samples unaffected by radiation damage. One fully coherent imaging technique for this purpose is digital in-line holography. Key to its successful application is the creation of X-ray point sources with high photon flux. In this study we applied zone plates to create such point sources with synchrotron radiation provided by the storage ring BESSY II. The obtained, divergent light cone is applied to holographic microscopy of biological objects such as critical point dried Navicula perminuta diatoms and human cells using photons with an energy of 250 eV. Compared to conventional experiments employing pinholes, exposure times are reduced by two orders of magnitude.
利用自由电子激光源提供的单脉冲成像是一种很有前途的 X 射线显微镜方法,有望为生物样本提供不受辐射损伤影响的高分辨率图像。为此目的的一种完全相干成像技术是数字线栅全息术。其成功应用的关键是创建具有高光子通量的 X 射线点源。在这项研究中,我们应用波带片在存储环 BESSY II 提供的同步辐射下创建这样的点源。获得的发散光锥可用于对生物物体(如临界点干燥的舟形藻硅藻和具有 250eV 能量的人细胞)进行全息显微镜检查。与使用针孔的传统实验相比,曝光时间减少了两个数量级。