Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming
E.A.B. Cole ()
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E.A.B. Cole: University of Leeds, Dept. Mathematics
in Springer Books from Springer
Date: 2009
ISBN: 978-1-84882-937-4
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Chapters in this book:
- Ch Chapter 1 Overview of device modelling
- E. A. B. Cole
- Ch Chapter 10 Solution of equations: the Newton and reduced method
- E. A. B. Cole
- Ch Chapter 11 Solution of equations: the phaseplane method
- E. A. B. Cole
- Ch Chapter 12 Solution of equations: the multigrid method
- E. A. B. Cole
- Ch Chapter 13 Approximate and numerical solutions of the Schrödinger equation
- E. A. B. Cole
- Ch Chapter 14 Genetic algorithms and simulated annealing
- E. A. B. Cole
- Ch Chapter 15 Grid generation
- E. A. B. Cole
- Ch Chapter 2 Quantum mechanics
- E. A. B. Cole
- Ch Chapter 3 Equilibrium thermodynamics and statistical mechanics
- E. A. B. Cole
- Ch Chapter 4 Density of states and applications—1
- E. A. B. Cole
- Ch Chapter 5 Density of states and applications—2
- E. A. B. Cole
- Ch Chapter 6 The transport equations and the device equations
- E. A. B. Cole
- Ch Chapter 7 Basic approximation and numerical methods
- E. A. B. Cole
- Ch Chapter 8 Fermi and associated integrals
- E. A. B. Cole
- Ch Chapter 9 The upwinding method
- E. A. B. Cole
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DOI: 10.1007/978-1-84882-937-4
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