Induced Representations of Locally Compact Groups

Induced Representations of Locally Compact Groups

2012 • 359 pages

"Locally compact groups arise in many diverse areas of mathematics, the physical sciences, and engineering and the presence of the group is usually felt through unitary representations of the group. This observation underlies the importance of understanding such representations and how they may be constructed, combined, or decomposed. Of particular importance are the irreducible unitary representations. In the middle of the last century, G.W. Mackey initiated a program to develop a systematic method for identifying all the irreducible unitary representations of a given locally compact group G. We denote the set of all unitary equivalence classes of irreducible unitary representations of G by G. Mackey's methods are only effective when G has certain restrictive structural characteristics; nevertheless, time has shown that many of the groups that arise in important problems are appropriate for Mackey's approach. The program Mackey initiated received contributions from many researchers with some of the most substantial advances made by R.J. Blattner and J.M.G. Fell. Fell'swork is particularly important in studying Gas a topological space. At the core of this program is the inducing construction, which is a method of building a unitary representation of a group from a representation of a subgroup"--

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33 primary books

#197 in Cambridge Tracts in Mathematics

Cambridge Tracts in Mathematics is a 33-book series with 33 primary works first released in 1990 with contributions by Peter Sarnak, Michael Aschbacher, and Yoshiyuki Kitaoka.

#99
Some Applications of Modular Forms
#104
Sporadic Groups
#106
Arithmetic of Quadratic Forms
#107
Duality and Perturbation Methods in Critical Point Theory
#112
Schur Algebras and Representation Theory
#132
Mixed Hodge Structures and Singularities
#134
Birational Geometry Algebraic Var
#139
Typical Dynamics of Volume Preserving Homeomorphisms
#147
Floer Homology Groups in Yang-Mills Theory
#150
Harmonic Maps, Conservation Laws and Moving Frames
#153
Abelian Varieties, Theta Functions and the Fourier Transform

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