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Part I (Introduction).- Part II (Theory). - 2. Special orthogonal groups (Introduction; Abstract groups;Orthogonal group SO(n); Tensor representations of the SO(n); Gamma matrix groups; Spinor representations of the SO(n); Concluding remarks).- 3. Rotational symmetry and Schr dinger equation in N-dimensional space (Introduction; Rotation operator; Orbital angular momentum operators; The linear momentum operators;Radial momentum operator; Spherical harmonic polynomials; Schr dinger equation for a two-body system; Concluding remarks).- 4. Dirac equation in higher dimensions (Introduction; Dirac equation in N+1 dimensions; The radial equation; Application to hydrogen atom; Concluding remarks).- 5. Klein-Gordon equation in higher dimensions (Introduction; The Radial equation; Application to hydrogen atom; Concluding remarks).- Part III (Application in Non-relativistic Quantum Mechanics).- 6. Harmonic oscillator (Introduction; Exact solutions of harmonic oscillator; Recurrence relations for the radioal function; Realization of dynamic group SU(1, 1); Generalization to pseudoharmonic ooscillator; Position and momentum information entropy; Conclusions).- 7. Coulomb potential (Introduction; Exact solution; Shift operators; Mapping between Coulumb and harmonic oscillator radial functions; Realization of dynamic of dynamic group SU (1, 1); Generalization to Kratzer potential; Concluding remarks).- 8. Wave function ansatz method (Introduction; Sextic potential; Singular one-fraction power potential; Mixture potential; Non-polynomial potential; Screened Coulomb potential; Morse potential; Conclusions).- 9. Levinson theorem for Schr dinger equation (Introduction; Scattering states and phase shifts; Bound states; Sturm--Liouville theorem; Levinson theorem; Discussions; Conclusions).- 10. Generalized hypervirial theorem for Schr dinger equation (Introduction; Generalized Blanchard's and Kramers' recurrence relations; Applications to central potentials; Conclusions).- 11. Exact quantization rule and Langer modification (Introduction; WKB approximation; Exact quantization rule; Application to trigonometric Rosen-Morse potential; Proper quantization rule; Illustrations of proper quantization rule; Langer modification in D dimensions; Calculations of logarithmic derivatives of wavefunction; Conclusions).- 12. Schr dinger equation with position-dependent mass (Introduction; Formalism; Applications to harmonic oscillator and Coulomb potential; Conclusions).- Part IV (Application in Relativistic Quantum Mechanics).- 13. Dirac equation with Coulomb potential (Introduction; Exact solutions of hydrogen-like atoms; Analysis of eigenvalues; Generalization to the Dirac equation with Coulomb potential plus scalar potential; Concluding remarks).- 14. Klein-Gordon equation with Coulomb potential (Introduction; Eigenfunctions and eigenvalues; Analysis of eigenvalues; Generalization: Klein-Gordon equation with Coulomb plus scalar potential; Comparison theorem; Conclusions).- 15. Levinson theorem for Dirac equation (Introduction; Generalization Sturm-Liouville theorem; Number of bound states; Relativistic Levinson theorem; Discussions; Friedel Theorem; Comparison theorem; Conclusions).- 16. Generalized hypervirial theorem for Dirac equation (Introduction; Relativistic recurrence relation; Diagonal case; Conclusions).- 17. Kaluza-Klein theory (Introduction; (4+D) -dimensional Kaluza-Klein theories; Paritcle spectrum of Kaluza-Klein theories for ferminions; Warped extra dimensions; Conclusions).- PART V (Conclusions and Outlooks).- 18. Conclusions and outlooks.- Appendices.- References.- Index.
Industry Reviews
"Wave Equations in Higher Dimensions is a well-written, comprehensive and self-contained book which is designed for graduate students and researchers in physics and mathematics. ... The author succeeds in fluently presenting the necessary and important material on the subject." (Dogan Demirhan, Mathematical Reviews, June, 2017)
"Wave Equations in Higher Dimensions is a well-written, comprehensive and self-contained book which is designed for graduate students and researchers in physics and mathematics. ... The author succeeds in fluently presenting the necessary and important material on the subject." (Dogan Demirhan, Mathematical Reviews, June, 2017)
"Wave Equations in Higher Dimensions is a well-written, comprehensive and self-contained book which is designed for graduate students and researchers in physics and mathematics. ... The author succeeds in fluently presenting the necessary and important material on the subject." (Dogan Demirhan, Mathematical Reviews, June, 2017)
ISBN: 9789400719163
ISBN-10: 9400719167
Published: 9th July 2011
Format: Hardcover
Language: English
Number of Pages: 324
Audience: Professional and Scholarly
Publisher: Springer Nature B.V.
Country of Publication: NL
Dimensions (cm): 23.39 x 15.6 x 1.91
Weight (kg): 0.63
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This product is categorised by
- Non-FictionSciencePhysicsRelativity Physics
- Non-FictionSciencePhysicsQuantum Physics & Quantum Mechanics & Quantum Field Theory
- Non-FictionSciencePhysicsClassical MathematicsWave Mechanics including Vibration & Acoustics
- Non-FictionSciencePhysicsApplied PhysicsGeophysics
- Non-FictionSciencePhysicsClassical MathematicsGravity
- Non-FictionMathematicsCalculus & Mathematical AnalysisDifferential Calculus & Equations