Jia Chun-Lin, Lentzen Markus, Urban Knut
Institut für Festkrperforschung, Forschungszentrum Jülich GmbH, 52425 Jülich, Germany.
Microsc Microanal. 2004 Apr;10(2):174-84. doi: 10.1017/S1431927604040425.
A novel imaging mode for high-resolution transmission electron microscopy is described. It is based on the adjustment of a negative value of the spherical aberration C S of the objective lens of a transmission electron microscope equipped with a multipole aberration corrector system. Negative spherical aberration applied together with an overfocus yields high-resolution images with bright-atom contrast. Compared to all kinds of images taken in conventional transmission electron microscopes, where the then unavoidable positive spherical aberration is combined with an underfocus, the contrast is dramatically increased. This effect can only be understood on the basis of a full nonlinear imaging theory. Calculations show that the nonlinear contrast contributions diminish the image contrast relative to the linear image for a positive-C S setting whereas they reinforce the image contrast relative to the linear image for a negative-C S setting. The application of the new mode to the imaging of oxygen in SrTiO3 and YBa2Cu3O7 demonstrates the benefit to materials science investigations. It allows us to image directly, without further image processing, strongly scattering heavy-atom columns together with weakly scattering light-atom columns.
描述了一种用于高分辨率透射电子显微镜的新型成像模式。它基于对配备多极像差校正系统的透射电子显微镜物镜的球差C S负值的调整。负球差与过焦一起应用可产生具有亮原子对比度的高分辨率图像。与传统透射电子显微镜中拍摄的各种图像相比,传统透射电子显微镜中不可避免的正球差与欠焦相结合,对比度显著提高。这种效应只能基于完整的非线性成像理论来理解。计算表明,对于正C S设置,非线性对比度贡献相对于线性图像会降低图像对比度,而对于负C S设置,它们相对于线性图像会增强图像对比度。新模式在SrTiO3和YBa2Cu3O7中氧成像的应用证明了其对材料科学研究的益处。它使我们能够直接成像,无需进一步图像处理,就能同时观察到强散射的重原子柱和弱散射的轻原子柱。