18,555 research outputs found

    A geometric characterisation of the blocks of the Brauer algebra

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    We give a geometric description of the blocks of the Brauer algebra Bn(δ)B_n(\delta) in characteristic zero as orbits of the Weyl group of type DnD_n. We show how the corresponding affine Weyl group controls the representation theory of the Brauer algebra in positive characteristic, with orbits corresponding to unions of blocks.Comment: 26 pages, 24 figure

    On the blocks of the walled Brauer algebra

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    We determine the blocks of the walled Brauer algebra in characteristic zero. These can be described in terms of orbits of the action of a Weyl group of type AA on a certain set of weights. In positive characteristic we give a linkage principle in terms of orbits of the corresponding affine Weyl group. We also classify the semisimple walled Brauer algebras in all characteristics.Comment: 40 pages, 16 figure

    Primitive ideals, twisting functors and star actions for classical Lie superalgebras

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    We study three related topics in representation theory of classical Lie superalgebras. The first one is classification of primitive ideals, i.e. annihilator ideals of simple modules, and inclusions between them. The second topic concerns Arkhipov’s twisting functors on the BGG category O. The third topic addresses deformed orbits of the Weyl group. These take over the role of the usual Weyl group orbits for Lie algebras, in the study of primitive ideals and twisting functors for Lie superalgebras

    On Weyl calculus in infinitely many variables

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    We outline an abstract approach to the pseudo-differential Weyl calculus for operators in function spaces in infinitely many variables. Our earlier approach to the Weyl calculus for Lie group representations is extended to the case of representations associated with infinite-dimensional coadjoint orbits. We illustrate the approach by the case of infinite-dimensional Heisenberg groups. The classical Weyl-H\"ormander calculus is recovered for the Schr\"odinger representations of the finite-dimensional Heisenberg groups.Comment: 7 page
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