L-7

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Goal : This is the first lecture about the localization. Localization is a wave phenomenon induced by disorder.

The Gaussian packet of free particles: the ballistic behaviour

The Schrodinger equation govern the evolution of the quantum state of a particle in 1D:

Here is the Hamiltonian. For a free particle the potential is absent,

Here is a real number. These solutions are delocalized on the entire real axis and they cannot be normalized.

However, physical solutions exist because, using the superposition principle, any linear combination of the separable solution is also a solution of the Schrodinger equation. However this superposed solution is is not separable and the particle's properties will evolve in time. Hence, we can costruct a localized wave packet, with the correct normalization:

An example is the Gaussian packet of intial spread :

You can show that at time

BCE and 1D localization
BCE and 1D localization

The conductance and the diffusive behaviour

Ohm's laws characterize electric transport of (good or bad) conductors:

  • First law:

Here is the resistence of the sample and is its conductance.\

  • Second law

Here are the resistivity and the conductivity. These are material properties, independent of the geometry of the sample These phenomenological laws are a macroscpic manifestation of the diffusive motion of the electrons. From the Drude model we know that disorder is the crucial ingredient to justify the presence of diffusion. ]