• Computer Simulation of Ion Beam Analysis: Possibilities and Limitations 

    Mayer, Matej; Eckstein, W.; Langhuth, H.; Schiettekatte, François; von Toussaint, U. (2011)
    Quantitative application of ion beam analysis methods, such as Rutherford backscat- tering, elastic recoil detection analysis, and nuclear reaction analysis, requires the use of computer simulation codes. The different types of available codes are pre- ...
  • Critical process temperatures for resistive InGaAsP/InP heterostructures heavily implanted by Fe or Ga ions 

    Fekecs, André; Chicoine, Martin; Ilahi, Bouraoui; Spring Thorpe, Anthony J.; Schiettekatte, François; Morris, Denis; Charette, Paul G.; Arès, Richard (Elsevier, 2015-07-30)
    We report on critical ion implantation and rapid thermal annealing (RTA) process temperatures that produce resistive Fe- or Ga-implanted InGaAsP/InP heterostructures. Two InGaAsP/InP heterostructure compositions, with band gap wavelengths of 1.3 μm and ...
  • Hydrogen analysis depth calibration by CORTEO Monte-Carlo simulation 

    Moser, M.; Reichart, P.; Bergmaier, A.; Greubel, C.; Schiettekatte, François; Dollinger, G. (Elsevier, 2015-10-21)
    Hydrogen imaging with sub-μm lateral resolution and sub-ppm sensitivity has become possible with coincident proton–proton (pp) scattering analysis (Reichart et al., 2004). Depth information is evaluated from the energy sum signal with respect to energy ...
  • Spectrum simulation of rough and nanostructured targets from their 2D and 3D image by Monte Carlo methods 

    Schiettekatte, François; Chicoine, Martin (2015-09)
    Corteo is a program that implements Monte Carlo (MC) method to simulate ion beam analysis (IBA) spectra of several techniques by following the ions trajectory until a sufficiently large fraction of them reach the detector to generate a spectrum. Hence, ...