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Operator Theory, Analysis and Mathematical Physics [electronic resource] / edited by Jan Janas, Pavel Kurasov, Ari Laptev, Sergei Naboko, Günter Stolz.

Contributor(s): Material type: TextTextSeries: Operator Theory: Advances and Applications ; 174Publisher: Basel : Birkhäuser Basel, 2007Description: VII, 260 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783764381356
Subject(s): Additional physical formats: Printed edition:: No title; Printed edition:: No titleDDC classification:
  • 515.7 23
LOC classification:
  • QA319-329.9
Online resources:
Contents:
Finiteness of Eigenvalues of the Perturbed Dirac Operator -- A Mathematical Study of Quantum Revivals and Quantum Fidelity -- On Relations Between Stable and Zeno Dynamics in a Leaky Graph Decay Model -- On the Spectrum of Partially Periodic Operators -- Functional Model for Singular Perturbations of Non-self-adjoint Operators -- Trace Formulas for Jacobi Operators in Connection with Scattering Theory for Quasi-Periodic Background -- Dirichlet-to-Neumann Techniques for the Plasma-waves in a Slot-diod -- Inverse Spectral Problem for Quantum Graphs with Rationally Dependent Edges -- Functional Model of a Class of Non-selfadjoint Extensions of Symmetric Operators -- Lyapunov Exponents at Anomalies of SL(2, ?)-actions -- Uniform and Smooth Benzaid-Lutz Type Theorems and Applications to Jacobi Matrices -- An Example of Spectral Phase Transition Phenomenon in a Class of Jacobi Matrices with Periodically Modulated Weights -- On Connection Between Factorizations of Weighted Schur Functions and Invariant Subspaces.
In: Springer eBooksSummary: This volume contains lectures delivered by the participants of the international conference "Operator Theory, Analysis and Mathematical Physics" (OTAMP 2004), held at the Mathematical Research and Conference Center in Bedlewo near Poznan, Poland on July 6-11, 2004. The idea behind these lectures was to present interesting ramifications of operator methods in current research of mathematical physics. The main topics are functional models of non-selfadjoint operators, spectral properties of Dirac and Jacobi matrices, Dirichlet-to-Neumann techniques, Lyapunov exponents methods, and inverse spectral problems for quantum graphs. .
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Holdings
Item type Current library Call number Status Date due Barcode Item holds
E-BOOKS ISI Library, Kolkata Not for loan EB1391
Total holds: 0

Finiteness of Eigenvalues of the Perturbed Dirac Operator -- A Mathematical Study of Quantum Revivals and Quantum Fidelity -- On Relations Between Stable and Zeno Dynamics in a Leaky Graph Decay Model -- On the Spectrum of Partially Periodic Operators -- Functional Model for Singular Perturbations of Non-self-adjoint Operators -- Trace Formulas for Jacobi Operators in Connection with Scattering Theory for Quasi-Periodic Background -- Dirichlet-to-Neumann Techniques for the Plasma-waves in a Slot-diod -- Inverse Spectral Problem for Quantum Graphs with Rationally Dependent Edges -- Functional Model of a Class of Non-selfadjoint Extensions of Symmetric Operators -- Lyapunov Exponents at Anomalies of SL(2, ?)-actions -- Uniform and Smooth Benzaid-Lutz Type Theorems and Applications to Jacobi Matrices -- An Example of Spectral Phase Transition Phenomenon in a Class of Jacobi Matrices with Periodically Modulated Weights -- On Connection Between Factorizations of Weighted Schur Functions and Invariant Subspaces.

This volume contains lectures delivered by the participants of the international conference "Operator Theory, Analysis and Mathematical Physics" (OTAMP 2004), held at the Mathematical Research and Conference Center in Bedlewo near Poznan, Poland on July 6-11, 2004. The idea behind these lectures was to present interesting ramifications of operator methods in current research of mathematical physics. The main topics are functional models of non-selfadjoint operators, spectral properties of Dirac and Jacobi matrices, Dirichlet-to-Neumann techniques, Lyapunov exponents methods, and inverse spectral problems for quantum graphs. .

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