Algebraic formulas for some nontrivial Un 6j symbols and Um n⊃Um×Un 3j m symbols
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Publication:3684329
DOI10.1063/1.526909zbMath0568.22013OpenAlexW1972644830MaRDI QIDQ3684329
Richard W. Haase, Philip H. Butler
Publication date: 1985
Published in: Journal of Mathematical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1063/1.526909
Related Items (3)
Algebraic expressions for some multiplicity-free 6j symbols and isoscalar factors for G2 ⋮ Tug-the-hook symmetry for quantum 6j-symbols ⋮ The symmetric group: Algebraic formulas for some S f 6j symbols and S f⊇S f1×S f2 3j m symbols
Cites Work
- Symmetric and unitary group representations. I. Duality theory
- A duality consistent phase convention for complex conjugation in SUn
- Kronecker products for compact semisimple Lie groups
- Dimensions of irreducible representations of the classical Lie groups
- 3jm and 6j tables for some bases of SU6and SU3
- Coupling coefficients and tensor operators for chains of groups
- Branching rules for classical Lie groups using tensor and spinor methods
- Structural properties of the canonical U(3) Racah functions and the U(3) : U(2) projective functions
- Structural properties of the self-conjugate SU(3) tensor operators
- Simultaneity and reality of U(n) and SU(n) 3j m and 6j symbols
- Racah Algebra for an Arbitrary Group
- Symmetry Properties of the 3j-Symbols for an Arbitrary Group
- Origin of regge symmetry for wigner coefficients ofLU(2)
- Generalized Young Tableaux and the General Linear Group
- On the structure of the canonical tensor operators in the unitary groups. I. An extension of the pattern calculus rules and the canonical splitting in U(3)
- Theoretical studies in nuclear structure I. Enumeration and classification of the states arising from the filling of the nuclear d -shell
- Theory of Complex Spectra. IV
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