Distributive lattices, affine semigroups, and branching rules of the classical groups
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Publication:423634
DOI10.1016/j.jcta.2012.02.007zbMath1242.05276arXiv1004.0054OpenAlexW1967293124MaRDI QIDQ423634
Publication date: 4 June 2012
Published in: Journal of Combinatorial Theory. Series A (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1004.0054
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Cites Work
- Pieri algebras for the orthogonal and symplectic groups
- A remark on the Gelfand-Tsetlin patterns for symplectic groups
- A basis for the symplectic group branching algebra
- Standard monomial theory for flag algebras of GL\((n)\)and Sp\((2n)\)
- Toric degeneration of branching algebras
- Representation-functors and flag-algebras for the classical groups. I
- Young tableaux, Gelfand patterns, and branching rules for classical groups
- Degenerations of flag and Schubert varieties to toric varieties
- Toric degenerations of spherical varieties
- Toric degeneration of Schubert varieties and Gelfand--Tsetlin polytopes
- Representation functors and flag-algebras for the classical groups. II
- Standard monomial bases and degenerations of \(SO_m(\mathbb C)\) representations
- Weyl chambers and standard monomial theory for poset lattice cones
- Double Pieri algebras and iterated Pieri algebras for the classical groups
- Stable branching rules for classical symmetric pairs
- Bases for some reciprocity algebras I
- Symmetry, Representations, and Invariants
- Construction of Sp-modules by tableaux
- Construction of orthogonal group modules using tableaux
- THE CLASSICAL GROUPS. SPECTRAL ANALYSIS OF THEIR FINITE-DIMENSIONAL REPRESENTATIONS
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