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LieART -- A Mathematica Application for Lie Algebras and Representation Theory

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arxiv 1206.6379 v2 pith:TGPKQ2JF submitted 2012-06-27 math-ph hep-phhep-thmath.MP

classification math-phhep-phhep-thmath.MP
keywords algebrasirreduciblelieartrepresentationsrepresentationtheoryusedapplication
verification ladder T0 review T1 audit T2 compute T3 formal
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We present the Mathematica application LieART (Lie Algebras and Representation Theory) for computations frequently encountered in Lie Algebras and representation theory, such as tensor product decomposition and subalgebra branching of irreducible representations. LieART can handle all classical and exceptional Lie algebras. It computes root systems of Lie algebras, weight systems and several other properties of irreducible representations. LieART's user interface has been created with a strong focus on usability and thus allows the input of irreducible representations via their dimensional name, while the output is in the textbook style used in most particle-physics publications. The unique Dynkin labels of irreducible representations are used internally and can also be used for input and output. LieART exploits the Weyl reflection group for most of the calculations, resulting in fast computations and a low memory consumption. Extensive tables of properties, tensor products and branching rules of irreducible representations are included in the appendix.

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Cited by 3 Pith papers

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    The paper derives a six-loop gravitational floor for hidden-photon kinetic mixing near 10^-13 and surveys other loop and GUT mechanisms that can produce tiny mixing.

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    The instanton partition function of many 4d N=2 and 5d N=1 gauge theories is fully determined by the perturbative part via generalized Nakajima-Yoshioka blowup equations.

  3. On Universal Eigenvalues of Casimir Operator

    math-ph 2019-08 conditional novelty 4.0 of 10

    The second Casimir eigenvalue on powers of the X2 representation tensored with the adjoint is given by one universal formula for all simple Lie algebras, respecting SO/Sp duality.

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