Heisenberg's Quantum Mechanics
Autor Mohsen Razavyen Limba Engleză Paperback – 28 feb 2011
Presents an account of quantum theory with a much greater emphasis on the Heisenberg equations of motion and the matrix method. This book features a treatment of the fundamental concepts such as the rules of constructing quantum mechanical operators and the classical-quantal correspondence.
Toate formatele și edițiile | Preț | Express |
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Paperback (1) | 474.52 lei 43-57 zile | |
World Scientific Publishing Company – 28 feb 2011 | 474.52 lei 43-57 zile | |
Hardback (1) | 732.49 lei 43-57 zile | |
World Scientific Publishing Company – 30 iun 2011 | 732.49 lei 43-57 zile |
Preț: 474.52 lei
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Specificații
ISBN-10: 9814304115
Pagini: 680
Dimensiuni: 165 x 244 x 36 mm
Greutate: 1.12 kg
Editura: World Scientific Publishing Company
Cuprins
A Brief Survey of Analytical Dynamics, Discovery of Matrix Mechanics, Mathematical Preliminaries; Postulates of Quantum Theory; Equations of Motion, Hamiltonian Operator and the Commutation Relations; Symmetries and Conservation Laws, Classical and Quantum Integrability; Classical and Quantum Mechanical Degeneracies; Bound State Energies for One-Dimensional Problems; Exactly Solvable Potentials, Supersymmetry and Shape Invariance; Supersymmetry and Superpotential; Shape Invariant Potentials; Two-Body Problem; Determination of the Angular Momentum Eigenvalues; Methods of Integration of the Heisenberg Equations of Motion; Discrete-Time Formulation of the Heisenberg's Equations of Motion; Quantum Tunneling Using Discrete-Time Formulation; Integration of the Operator Differential Equations; Perturbation Theory; Other Methods of Approximation; Heisenberg Correspondence Principle, Quantization of the Equations of Motion with Higher Derivatives; Determinantal Method in Potential Scattering; Time-Dependent Scattering Theory; The Scattering Matrix; Impact Parameter Representation of the Scattering Amplitude; Transition Probability; Quantum Diffraction, Motion of a Charged Particle in Electromagnetic Field; The Aharanov-Bohm Effect; Neutron Interferometry; Quantum Many-Body Problem; Hartree and Hartree-Fock Approximations; Second Quantization; Bogoliubov Transformation for a Many-Boson System; Bogoliubov Transformation for Fermions Interacting Through Pairing Forces; Quantum Theory of Free Electromagnetic Field; Casimir Force; Interaction of Radiation with Matter; Heisenberg Equations for Interaction of an Atom with Radiation; Bell's Inequalities;