Introduction To Non Abelian Class Field Theory An Automorphic Forms Of Weight 1 And 2 Dimensional Galois Representations


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Introduction To Non-abelian Class Field Theory, An: Automorphic Forms Of Weight 1 And 2-dimensional Galois Representations


Introduction To Non-abelian Class Field Theory, An: Automorphic Forms Of Weight 1 And 2-dimensional Galois Representations

Author: Toyokazu Hiramatsu

language: en

Publisher: World Scientific

Release Date: 2016-09-13


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This monograph provides a brief exposition of automorphic forms of weight 1 and their applications to arithmetic, especially to Galois representations. One of the outstanding problems in arithmetic is a generalization of class field theory to non-abelian Galois extension of number fields. In this volume, we discuss some relations between this problem and cusp forms of weight 1.

An Introduction to Non-Abelian Class Field Theory


An Introduction to Non-Abelian Class Field Theory

Author: Toyokazu Hiramatsu

language: en

Publisher: World Scientific Publishing Company

Release Date: 2017


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This monograph provides a brief exposition of automorphic forms of weight 1 and their applications to arithmetic, especially to Galois representations. One of the outstanding problems in arithmetic is a generalization of class field theory to non-abelian Galois extension of number fields. In this volume, we discuss some relations between this problem and cusp forms of weight 1.

Smooth-automorphic Forms And Smooth-automorphic Representations


Smooth-automorphic Forms And Smooth-automorphic Representations

Author: Harald Grobner

language: en

Publisher: World Scientific

Release Date: 2023-06-09


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This book provides a conceptual introduction into the representation theory of local and global groups, with final emphasis on automorphic representations of reductive groups G over number fields F.Our approach to automorphic representations differs from the usual literature: We do not consider 'K-finite' automorphic forms, but we allow a richer class of smooth functions of uniform moderate growth. Contrasting the usual approach, our space of 'smooth-automorphic forms' is intrinsic to the group scheme G/F.This setup also covers the advantage that a perfect representation-theoretical symmetry between the archimedean and non-archimedean places of the number field F is regained, by making the bigger space of smooth-automorphic forms into a proper, continuous representation of the full group of adelic points of G.Graduate students and researchers will find the covered topics appear for the first time in a book, where the theory of smooth-automorphic representations is robustly developed and presented in great detail.