Bitangential Direct and Inverse Problems for Systems of Integral and Differential Equations Bitangential Direct and Inverse Problems for Systems of Integral and Differential Equations

Bitangential Direct and Inverse Problems for Systems of Integral and Differential Equations

    • ‏129٫99 US$
    • ‏129٫99 US$

وصف الناشر

This largely self-contained treatment surveys, unites and extends some 20 years of research on direct and inverse problems for canonical systems of integral and differential equations and related systems. Five basic inverse problems are studied in which the main part of the given data is either a monodromy matrix; an input scattering matrix; an input impedance matrix; a matrix valued spectral function; or an asymptotic scattering matrix. The corresponding direct problems are also treated. The book incorporates introductions to the theory of matrix valued entire functions, reproducing kernel Hilbert spaces of vector valued entire functions (with special attention to two important spaces introduced by L. de Branges), the theory of J-inner matrix valued functions and their application to bitangential interpolation and extension problems, which can be used independently for courses and seminars in analysis or for self-study. A number of examples are presented to illustrate the theory.

النوع
علم وطبيعة
تاريخ النشر
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١٣ سبتمبر
اللغة
EN
الإنجليزية
عدد الصفحات
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الناشر
Cambridge University Press
البائع
Cambridge University Press
الحجم
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‫م.ب.‬
Recent Advances in Operator Theory and Its Applications Recent Advances in Operator Theory and Its Applications
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Recent Advances in Operator Theory in Hilbert and Krein Spaces Recent Advances in Operator Theory in Hilbert and Krein Spaces
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Topics in Operator Theory Topics in Operator Theory
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Operator Theory and Indefinite Inner Product Spaces Operator Theory and Indefinite Inner Product Spaces
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Operator Algebras, Operator Theory and Applications Operator Algebras, Operator Theory and Applications
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Around the Research of Vladimir Maz'ya III Around the Research of Vladimir Maz'ya III
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