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Superconductivity

Methods:

  1. More finite differences
  2. Optimization - unconstrained
  3. Formation of derivatives (gradient/Hessian)
    1. Analytic
    2. Finite differences
    3. Automatic - ADIFOR

Principles:

  1. Rate of convergence for optimization
  2. Accuracy/efficiency of computing derivatives
  3. Preserving physical symmetries in the discrete model


sgreen@cs.utk.edu