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Hilbert Spaces, Wavelets, Generalised Functions and Modern Quantum Mechanics
von W.-H. SteebInhaltsverzeichnis
- 1 Hilbert Spaces.
- 2 Fourier Transform and Wavelets.
- 3 Linear Operators in Hilbert Spaces.
- 4 Generalized Functions.
- 5 Classical Mechanics and Hamilton Systems.
- 6 Postulates of Quantum Mechanics.
- 7 Interaction Picture.
- 8 Eigenvalue Problem.
- 8.1 Eigenvalue Equation.
- 8.2 Applications.
- 9 Spin Matrices and Kronecker Product.
- 10 Parity and Group Theory.
- 11 Uncertainty Relation.
- 12 Harmonic Oscillator.
- 12.1 Classical Case.
- 12.2 Quantum Case.
- 13 Coherent and Squeezed States.
- 14 Angular Momentum and Lie Algebras.
- 15 Two-Body Bound State Problem.
- 15.1 Introduction.
- 15.2 Spherical Oscillator.
- 15.3 Hydrogen-like Atoms.
- 16 One-Dimensional Scattering.
- 17 Solitons and Quantum Mechanics.
- 18 Perturbation Theory.
- 19 Helium Atom.
- 20 Potential Scattering.
- 21 Berry Phase.
- 22 Measurement and Quantum States.
- 22.1 Introduction.
- 22.2 Measurement Problem.
- 22.3 Copenhagen Interpretation.
- 22.4 Hidden Variable Theories.
- 22.5 Everett Interpretation.
- 22.6 Basis Degeneracy Problem.
- 23 Quantum Computing.
- 23.1 Introduction.
- 23.2 Quantum Bit.
- 23.3 Quantum Gates.
- 23.4 Quantum Copying.
- 23.5 Shor’s Algorithm.
- 24 Lebesgue Integration and Stieltjes Integral.