• Title of article

    Geometric reconstruction methods for electron tomography

  • Author/Authors

    Alpers، نويسنده , , Andreas and Gardner، نويسنده , , Richard J. and Kِnig، نويسنده , , Stefan and Pennington، نويسنده , , Robert S. and Boothroyd، نويسنده , , Chris B. and Houben، نويسنده , , Lothar and Dunin-Borkowski، نويسنده , , Rafal E. and Joost Batenburg، نويسنده , , Kees، نويسنده ,

  • Pages
    13
  • From page
    42
  • To page
    54
  • Abstract
    Electron tomography is becoming an increasingly important tool in materials science for studying the three-dimensional morphologies and chemical compositions of nanostructures. The image quality obtained by many current algorithms is seriously affected by the problems of missing wedge artefacts and non-linear projection intensities due to diffraction effects. The former refers to the fact that data cannot be acquired over the full 180° tilt range; the latter implies that for some orientations, crystalline structures can show strong contrast changes. To overcome these problems we introduce and discuss several algorithms from the mathematical fields of geometric and discrete tomography. The algorithms incorporate geometric prior knowledge (mainly convexity and homogeneity), which also in principle considerably reduces the number of tilt angles required. Results are discussed for the reconstruction of an InAs nanowire.
  • Keywords
    InAs nanowires , convexity , homogeneity , Reconstruction algorithms , Electron tomography
  • Journal title
    Astroparticle Physics
  • Record number

    2043938