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Scattering-many-body

Weidenmuller S-matrix approach to a quantum many-body mesoscopic system with tunneling and Andreev phenomena to plot the differential conductance, following Beenakker's random matrix theory.

Theoretical Features available in notes

  • SNS Junctions scattering:
    • Black box treatment of an SNS junction via S-matrix approach
  • Random matrix theory and Weidenmuller's formula:
    • Beenakker's RMT of quantum transport thorugh a chaotic cavity and derivation of S matrix via Weidenmuller's approach
  • Conductance:
    • Kubo thermodynamics approach to conductance, calculated via Weidenmuller's S matrix
  • Application to the poor man's Majorana:
    • Application to the differential conductance of the PMM model

Numerical simulations features

Wolfram Mathematica numerical simulation of the left/right lead conductance via Weidenmuller's formula, as well as simulation of the stability of the system via simultaneous detuning of the on-site chemical potentials. Python code for toy-model simulations of the system.

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Weidenmuller S-matrix approach to a quantum many-body mesoscopic system with tunneling and Andreev phenomena to plot the differential conductance, following Beenakker's random matrix theory.

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