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This book is the first one that brings together recent results on the harmonic analysis of exponential solvable Lie groups. There still are many interesting open problems, and the book contributes to the future progress of this research field. As well, various related topics are presented to motivate young researchers. The orbit method invented by Kirillov is applied to study basic problems in the analysis on exponential solvable Lie groups. This method tells us that the unitary dual of these groups is realized as the space of their coadjoint orbits. This fact is established using the Mackey theory for induced representations, and that mechanism is explained first. One of the fundamental problems in the representation theory is the irreducible decomposition of induced or restricted representations. Therefore, these decompositions are studied in detail before proceeding to various related problems: the multiplicity formula, Plancherel formulas, intertwining operators, Frobenius reciprocity, and associated algebras of invariant differential operators. The main reasoning in the proof of the assertions made here is induction, and for this there are not many tools available. Thus a detailed analysis of the objects listed above is difficult even for exponential solvable Lie groups, and it is often assumed that the group is nilpotent. To make the situation clearer and future development possible, many concrete examples are provided. Various topics presented in the nilpotent case still have to be studied for solvable Lie groups that are not nilpotent. They all present interesting and important but difficult problems, however, which should be addressed in the near future. Beyond the exponential case, holomorphically induced representations introduced by Auslander and Kostant are needed, and for that reason they are included in this book. .
Mathematics. --- Topological Groups, Lie Groups. --- Abstract Harmonic Analysis. --- Functional Analysis. --- Topological Groups. --- Harmonic analysis. --- Functional analysis. --- Mathématiques --- Analyse harmonique --- Analyse fonctionnelle --- Mathematics --- Physical Sciences & Mathematics --- Algebra --- Calculus --- 512.81 --- Lie groups --- 512.81 Lie groups --- Lie groups. --- Lie algebras. --- Algebras, Lie --- Groups, Lie --- Analysis (Mathematics) --- Functions, Potential --- Potential functions --- Topological groups. --- Lie algebras --- Symmetric spaces --- Topological groups --- Banach algebras --- Mathematical analysis --- Bessel functions --- Fourier series --- Harmonic functions --- Time-series analysis --- Algebra, Abstract --- Algebras, Linear --- Functional calculus --- Calculus of variations --- Functional equations --- Integral equations --- Groups, Topological --- Continuous groups
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This book is the first one that brings together recent results on the harmonic analysis of exponential solvable Lie groups. There still are many interesting open problems, and the book contributes to the future progress of this research field. As well, various related topics are presented to motivate young researchers. The orbit method invented by Kirillov is applied to study basic problems in the analysis on exponential solvable Lie groups. This method tells us that the unitary dual of these groups is realized as the space of their coadjoint orbits. This fact is established using the Mackey theory for induced representations, and that mechanism is explained first. One of the fundamental problems in the representation theory is the irreducible decomposition of induced or restricted representations. Therefore, these decompositions are studied in detail before proceeding to various related problems: the multiplicity formula, Plancherel formulas, intertwining operators, Frobenius reciprocity, and associated algebras of invariant differential operators. The main reasoning in the proof of the assertions made here is induction, and for this there are not many tools available. Thus a detailed analysis of the objects listed above is difficult even for exponential solvable Lie groups, and it is often assumed that the group is nilpotent. To make the situation clearer and future development possible, many concrete examples are provided. Various topics presented in the nilpotent case still have to be studied for solvable Lie groups that are not nilpotent. They all present interesting and important but difficult problems, however, which should be addressed in the near future. Beyond the exponential case, holomorphically induced representations introduced by Auslander and Kostant are needed, and for that reason they are included in this book. .
Ordered algebraic structures --- Topological groups. Lie groups --- Functional analysis --- Harmonic analysis. Fourier analysis --- Mathematical analysis --- analyse (wiskunde) --- topologie (wiskunde) --- Fourierreeksen --- functies (wiskunde) --- mathematische modellen --- wiskunde --- topologie
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Grups de Lie --- Representacions de grups --- Representació de grups (Matemàtica) --- Teoria de grups --- Fórmules de traça --- Grups simètrics --- Representacions de semigrups --- Representacions integrals --- Grups topològics --- Espais simètrics --- Espais homogenis --- Grups de Lie semisimples --- Lie groups. --- Groups, Lie --- Lie algebras --- Symmetric spaces --- Topological groups
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The purpose of the book is to discuss the latest advances in the theory of unitary representations and harmonic analysis for solvable Lie groups. The orbit method created by Kirillov is the most powerful tool to build the ground frame of these theories. Many problems are studied in the nilpotent case, but several obstacles arise when encompassing exponentially solvable settings. The book offers the most recent solutions to a number of open questions that arose over the last decades, presents the newest related results, and offers an alluring platform for progressing in this research area. The book is unique in the literature for which the readership extends to graduate students, researchers, and beginners in the fields of harmonic analysis on solvable homogeneous spaces.
Algebra --- Mathematical analysis --- Mathematics --- algebra --- analyse (wiskunde) --- wiskunde
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Algebra --- Mathematical analysis --- Mathematics --- algebra --- analyse (wiskunde) --- wiskunde
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