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9780521850643

Poincaré Duality Algebras, Macaulay's Dual Systems, and Steenrod Operations

by
  • ISBN13:

    9780521850643

  • ISBN10:

    0521850649

  • Format: Hardcover
  • Copyright: 2005-09-19
  • Publisher: Cambridge University Press

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Summary

Poincaregrave; duality algebras originated in the work of topologists on the cohomology of closed manifolds, and Macaulay's dual systems in the study of irreducible ideals in polynomial algebras. These two ideas are tied together using basic commutative algebra involving Gorenstein algebras. Steenrod operations also originated in algebraic topology, but may best be viewed as a means of encoding the information often hidden behind the Frobenius map in characteristic p<>0. They provide a noncommutative tool to study commutative algebras over a Galois field. In this Tract the authors skilfully bring together these ideas and apply them to problems in invariant theory. A number of remarkable and unexpected interdisciplinary connections are revealed that will interest researchers in the areas of commutative algebra, invariant theory or algebraic topology.

Table of Contents

Introduction 1(8)
Part I. Poincare duality quotients
9(22)
Poincare duality, Gorenstein algebras, and irreducible ideals
9(5)
Properties of irreducible ideals
14(3)
The ancestor ideals
17(1)
Fundamental classes
18(3)
Poincare duality quotients of F[V]
21(2)
Counting Poincare duality quotients up to isomorphism
23(8)
Part II. Macaulay's dual systems and Frobenius powers
31(22)
Divided power algebras and operations
32(3)
Macaulay's dual principal systems
35(3)
An illustrative example
38(1)
Relation to the classical form problem
39(1)
The K L Paradigm: a computational tool
40(4)
Frobenius powers
44(9)
Part III. Poincare duality and the Steenrod algebra
53(28)
P*-Unstable Poincare duality quotients of Fq[V]
54(4)
The P*-Double Annihilator Theorem
58(2)
Wu classes
60(5)
P*-Indecomposables: Hit Problems
65(2)
A dual interpretation of the P*-Double Annihilator Theorem
67(4)
Steenrod operations and Frobenius powers
71(4)
Examples
75(6)
Part IV. Dickson, symmetric, and other coinvariants
81(12)
Dickson coinvariants
81(5)
Wu classes of algebras of coinvariants
86(2)
The Macaulay dual of Dickson coinvariants mod 2
88(1)
Symmetric coinvariants
89(4)
Part V. The Hit Problem mod 2
93(40)
Powers of Dickson polynomials in 2 variables
94(6)
A*-Indecomposable elements in F2[x, y]
100(5)
Powers of Dickson polynomials in 3 variables
105(4)
Powers of Dickson polynomials in many variables
109(14)
Powers of mod 2 Stiefel-Whitney classes in 3 variables
123(10)
Part VI. Macaulay's inverse systems and applications
133(44)
Macaulay's inverse principal systems
134(2)
Catalecticant Matrices and Ancestor Ideals
136(6)
Regular ideals
142(4)
Lying over for irreducible ideals
146(9)
Change of rings and inverse polynomials
155(5)
Inverse systems and the Steenrod algebra
160(5)
Change of Rings and Wu Classes
165(5)
The Hit Problem for the Dickson and other algebras
170(7)
References 177(8)
Notation 185(4)
Index 189

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