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Waves and disorder
Lectures on Waves in disordered media: transport and localization
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  • Slides of lecture 13 are available
  • Slides of lecture 12 are available
  • Slides of lecture 11 are available
  • Slides of lecture 10 are available
  • Home work for Monday, May, 22nd with answers
  • Python scripts for the kicked rotor are available
  • Slides of lecture 6 are available
  • Python scripts for Anderson localization in 2d and 3d are available
  • Slides of Lectures 4 and 5 are available
  • All subjects for presentations by students are available - You MUST choose one
  • Python scripts for the 1d Anderson model are available
  • Python script for solving the DMPK equation is available
  • Python script for the Kronig-Penney model is available
  • Python scripts on classical dynamics are available
  • Slides for Lectures 1 and 2 are available.

Numerical experiments

During the tutorials (and between them...), students are encouraged to perform numerical experiments to explore various aspects of transport and localization in disordered media. These scripts are written in Python, and made available here. Feel free to download them, play with them, modify them and redistribute them (see how-to-use-the-scripts for the licence and copyright).

  • How to use the scripts?

  • Classical diffusive dynamics

  • Click on figure  to see the distribution of -log(T)

    Kronig-Penney model of 1d localization

  • DMPK equations

  • hamiltonian.png

    1d Anderson model

  • Anderson localization in dimension 2 and dimension 3

  • hamiltonian[1].png

    Kicked rotor

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