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Galoisian Approach to Supersymmetric Quantum Mechanics
Details
This book is concerning to a Differential Galois (Picard-Vessiot) Theory point of view of the Supersymmetric Quantum Mechanics. The main object is the non-relativistic stationary Schrödinger equation , where are introduced the concepts of Algebraic Spectrum and Hamiltonian Algebrization. Using the Kovacic's Algorithm and the Hamiltonian Algebrization are analyzed Darboux transformations, Crum iterations and supersymmetric quantum mechanics, including their Algebrized Versions from a Galoisian approach. In particular are obtained the ground state, eigenvalues, eigenfunctions, the differential Galois groups and eigenrings of some Schrödinger equations with potentials such as exactly solvable, quasi-exactly solvable and shape invariant potentials. Finally is introduced one methodology to find Algebraically Solvable and Algebraically Quasi- Solvable Potentials. It consists in to apply the Hamiltonian Algebrization, as inverse process, over families of second order linear differential equations integrables in the Picard-Vessiot sense for a set of parameters, in particular, involving orthogonal polynomials and special functions.
Autorentext
Dr. Primitivo Belén Acosta-Humánez obtained the PhD degree with European label at UPC-Barcelona. Currently he is the founder and director of IMA at Universidad Sergio Arboleda, university in where he studied the bachelor and MA in mathematics. His field of research is Algebraic Methods in Mathematical Physics and Dynamical Systems.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783639308563
- Sprache Englisch
- Größe H7mm x B220mm x T150mm
- Jahr 2010
- EAN 9783639308563
- Format Kartonierter Einband (Kt)
- ISBN 978-3-639-30856-3
- Titel Galoisian Approach to Supersymmetric Quantum Mechanics
- Autor Primitivo Belén Acosta-Humánez
- Untertitel The integrability analysis of the Schrdinger equation by means of differential Galois theory
- Gewicht 187g
- Herausgeber VDM Verlag Dr. Müller e.K.
- Anzahl Seiten 128
- Genre Mathematik