Search results for "Hyperoctahedral group"

showing 7 items of 7 documents

Polynomial identities with involution and the hyperoctahedral group

1987

AlgebraCombinatoricsInvolution (mathematics)Hyperoctahedral groupMathematics
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Automorphisms of the integral group ring of the hyperoctahedral group

1990

The purpose of this paper is to verify a conjecture of Zassenhaus [3] for hyperoctahedral groups by proving that every normalized automorphism () of ZG can be written in the form () = Tu 0 I where I is an automorphism of ZG obtained by extending an automorphism of G linearly to ZG and u is a unit of (JJG. A similar result was proved for symmetric groups by Peterson in [2]; the reader should consult [3] or the survey [4] for other results of this kind. 1989

CombinatoricsAlgebra and Number TheoryMatrix groupSymmetric groupAutomorphisms of the symmetric and alternating groupsOuter automorphism groupAlternating groupHyperoctahedral groupTopologyAutomorphismMathematicsGroup ringCommunications in Algebra
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Transitive factorizations in the hyperoctahedral group

2008

The classical Hurwitz enumeration problem has a presentation in terms of transitive factor- izationsin the symmetric group. This presentationsuggestsageneralizationfromtypeAto otherfinite reflection groups and, in particular, to type B.W e study this generalization both from ac ombinatorial and a geometric point of view, with the prospect of providing am eans of understanding more of the structure of the moduli spaces of maps with an S2-symmetry. The type A case has been well studied and connects Hurwitz numbers to the moduli space of curves. W ec onjecture an analogous setting for the type B case that is studied here. 1I ntroduction Transitive factorizations of permutations into transposit…

CombinatoricsAlgebraic combinatoricsHurwitz quaternionHurwitz problemSymmetric groupGeneral MathematicsHurwitz's automorphisms theoremHurwitz matrixHurwitz polynomialSettore MAT/03 - GeometriaHyperoctahedral groupMathematicssymmetric group covering space
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POLYNOMIAL GROWTH OF THE*-CODIMENSIONS AND YOUNG DIAGRAMS

2001

Let A be an algebra with involution * over a field F of characteristic zero and Id(A, *) the ideal of the free algebra with involution of *-identities of A. By means of the representation theory of the hyperoctahedral group Z 2wrS n we give a characterization of Id(A, *) in case the sequence of its *-codimensions is polynomially bounded. We also exhibit an algebra G 2 with the following distinguished property: the sequence of *-codimensions of Id(G 2, *) is not polynomially bounded but the *-codimensions of any T-ideal U properly containing Id(G 2, *) are polynomially bounded.

CombinatoricsDiscrete mathematicsInvolution (mathematics)Filtered algebraAlgebra and Number TheoryMathematics::Commutative AlgebraFree algebraBounded functionHyperoctahedral groupRepresentation theoryComputer Science::Cryptography and SecurityMathematicsCommunications in Algebra
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A Star-Variety With Almost Polynomial Growth

2000

Abstract Let F be a field of characteristic zero. In this paper we construct a finite dimensional F -algebra with involution M and we study its ∗ -polynomial identities; on one hand we determine a generator of the corresponding T -ideal of the free algebra with involution and on the other we give a complete description of the multilinear ∗ -identities through the representation theory of the hyperoctahedral group. As an outcome of this study we show that the ∗ -variety generated by M , var( M , ∗ ) has almost polynomial growth, i.e., the sequence of ∗ -codimensions of M cannot be bounded by any polynomial function but any proper ∗ -subvariety of var( M , ∗ ) has polynomial growth. If G 2 is…

CombinatoricsInvolution (mathematics)Multilinear mapAlgebra and Number TheorylawAlternating polynomialFree algebraBounded functionA* search algorithmHyperoctahedral groupRepresentation theorylaw.inventionMathematicsJournal of Algebra
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On the ∗-cocharacter sequence of 3×3 matrices

2000

Abstract Let M 3 (F) be the algebra of 3×3 matrices with involution * over a field F of characteristic zero. We study the ∗ -polynomial identities of M 3 (F) , where ∗=t is the transpose involution, through the representation theory of the hyperoctahedral group B n . After decomposing the space of multilinear ∗ -polynomial identities of degree n under the B n -action, we determine which irreducible B n -modules appear with non-zero multiplicity. In symbols, we write the nth ∗ -cocharacter χ n (M 3 (F),*)=∑ r=0 n ∑ λ⊢r,h(λ)⩽6 μ⊢n−r,h(μ)⩽3 m λ,μ χ λ,μ , where λ and μ are partitions of r and n−r , respectively, χ λ,μ is the irreducible B n -character associated to the pair (λ,μ) and m λ,μ ⩾0 i…

Discrete mathematicsNumerical AnalysisMultilinear mapAlgebra and Number TheoryMultiplicity (mathematics)Hyperoctahedral groupRepresentation theoryPolynomial identitiesCombinatoricsMatrices with involutionCocharacter sequenceDiscrete Mathematics and CombinatoricsGeometry and TopologyMathematicsLinear Algebra and its Applications
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The graded identities of upper triangular matrices of size two

2002

AbstractLet UT2 be the algebra of 2×2 upper triangular matrices over a field F. We first classify all possible gradings on UT2 by a group G. It turns out that, up to isomorphism, there is only one non-trivial grading and we study all the graded polynomial identities for such algebra. In case F is of characteristic zero we give a complete description of the space of multilinear graded identities in the language of Young diagrams through the representation theory of the hyperoctahedral group. We finally establish a result concerning the rate of growth of the identities for such algebra by proving that its sequence of graded codimensions has almost polynomial growth.

Filtered algebraCombinatoricsPolynomialAlgebra and Number TheoryMathematics::Commutative AlgebraDifferential graded algebraGraded ringTriangular matrixHyperoctahedral groupRepresentation theoryMathematicsGraded Lie algebraJournal of Pure and Applied Algebra
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