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Introduction to Spectral Theory : With Applications to Schrödinger Operators
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
The Spectrum of Linear Operators and Hilbert Spaces
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Chapter 2
The Geometry of a Hilbert Space and Its Subspaces
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Chapter 3
Exponential Decay of Eigenfunctions
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Chapter 4
Operators on Hilbert Spaces
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Chapter 5
Self-Adjoint Operators
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Chapter 6
Riesz Projections and Isolated Points of the Spectrum
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Chapter 7
The Essential Spectrum: Weyl’s Criterion
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Chapter 8
Self-Adjointness: Part 1. The Kato Inequality
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Chapter 9
Compact Operators
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Chapter 10
Locally Compact Operators and Their Application to Schrödinger Operators
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Chapter 11
Semiclassical Analysis of Schrödinger Operators I: The Harmonic Approximation
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Chapter 12
Semiclassical Analysis of Schrödinger Operators II: The Splitting of Eigenvalues
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Chapter 13
Self-Adjointness: Part 2. The Kato-Rellich Theorem
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Chapter 14
Relatively Compact Operators and the Weyl Theorem
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Chapter 15
Perturbation Theory: Relatively Bounded Perturbations
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Chapter 16
Theory of Quantum Resonances I: The Aguilar-Balslev-Combes-Simon Theorem
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Chapter 17
Spectral Deformation Theory
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Chapter 18
Spectral Deformation of Schrödinger Operators
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Chapter 19
The General Theory of Spectral Stability
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Chapter 20
Theory of Quantum Resonances II: The Shape Resonance Model
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Chapter 21
Quantum Nontrapping Estimates
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Chapter 22
Theory of Quantum Resonances III: Resonance Width
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Chapter 23
Other Topics in the Theory of Quantum Resonances
Overall attention for this book and its chapters
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Mentioned by
syllabi
1
institution with syllabi
wikipedia
1
Wikipedia page
Citations
dimensions_citation
349
Dimensions
Readers on
mendeley
27
Mendeley
Book overview
1. The Spectrum of Linear Operators and Hilbert Spaces
2. The Geometry of a Hilbert Space and Its Subspaces
3. Exponential Decay of Eigenfunctions
4. Operators on Hilbert Spaces
5. Self-Adjoint Operators
6. Riesz Projections and Isolated Points of the Spectrum
7. The Essential Spectrum: Weyl’s Criterion
8. Self-Adjointness: Part 1. The Kato Inequality
9. Compact Operators
10. Locally Compact Operators and Their Application to Schrödinger Operators
11. Semiclassical Analysis of Schrödinger Operators I: The Harmonic Approximation
12. Semiclassical Analysis of Schrödinger Operators II: The Splitting of Eigenvalues
13. Self-Adjointness: Part 2. The Kato-Rellich Theorem
14. Relatively Compact Operators and the Weyl Theorem
15. Perturbation Theory: Relatively Bounded Perturbations
16. Theory of Quantum Resonances I: The Aguilar-Balslev-Combes-Simon Theorem
17. Spectral Deformation Theory
18. Spectral Deformation of Schrödinger Operators
19. The General Theory of Spectral Stability
20. Theory of Quantum Resonances II: The Shape Resonance Model
21. Quantum Nontrapping Estimates
22. Theory of Quantum Resonances III: Resonance Width
23. Other Topics in the Theory of Quantum Resonances
Summary
Syllabi
Wikipedia
Dimensions citations
This data is correct as of December 2015 - for more up to date information, please visit
https://opensyllabus.org/
So far, Altmetric has seen this research output assigned in
1
syllabus from an institution on Open Syllabus Project.
Institution
Syllabi count
Course subject areas covered
Louisiana State University and Agricultural & Mechanical College
1
Unknown