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Microlocal Analysis for Differential Operators

Microlocal Analysis for Differential Operators
An Introduction

Part of London Mathematical Society Lecture Note Series

  • Date Published: March 1994
  • availability: Available
  • format: Paperback
  • isbn: 9780521449861

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  • This short introduction to microlocal analysis is presented, in the spirit of Hörmander, in the classical framework of partial differential equations. This theory has important applications in areas such as harmonic and complex analysis, and also in theoretical physics. Here Grigis and Sjöstrand emphasise the basic tools, especially the method of stationary phase, and they discuss wavefront sets, elliptic operators, local symplectic geometry, and WKB-constructions. The contents of the book correspond to a graduate course given many times by the authors. It should prove to be useful to mathematicians and theoretical physicists, either to enrich their general knowledge of this area, or as preparation for the current research literature.

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    Product details

    • Date Published: March 1994
    • format: Paperback
    • isbn: 9780521449861
    • length: 160 pages
    • dimensions: 229 x 152 x 9 mm
    • weight: 0.24kg
    • availability: Available
  • Table of Contents

    Introduction
    1. Symbols and oscillatory integrals
    2. The method of stationary phase
    3. Pseudodifferential operators
    4. Application to elliptic operators and L2 continuity
    5. Local symplectic geometry I (Hamilton-Jacobi theory)
    6. The strictly hyperbolic Cauchy problem - construction of a parametrix
    7. The wavefront set (singular spectrum) of a distribution
    8. Propagation of singularities for operators of real principle type
    9. Local symplectic geometry II
    10. Canonical transformations of pseudodifferential operators
    11. Global theory of Fourier integral operators
    12. Spectral theory for elliptic operators
    Bibliography.

  • Authors

    Alain Grigis, Université de Paris XIII

    Johannes Sjöstrand, Université de Paris XI

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