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Donaldson-Thomas invariants, torus knots, and lattice paths

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arxiv 1802.04573 v2 pith:B5T5SNVY submitted 2018-02-13 hep-th math-phmath.COmath.MPmath.QAmath.RT

classification hep-thmath-phmath.COmath.MPmath.QAmath.RT
keywords functionsgeneratinginvariantspathsextremalcountingdonaldson-thomasfind
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abstract

In this paper we find and explore the correspondence between quivers, torus knots, and combinatorics of counting paths. Our first result pertains to quiver representation theory -- we find explicit formulae for classical generating functions and Donaldson-Thomas invariants of an arbitrary symmetric quiver. We then focus on quivers corresponding to $(r,s)$ torus knots and show that their classical generating functions, in the extremal limit and framing $rs$, are generating functions of lattice paths under the line of the slope $r/s$. Generating functions of such paths satisfy extremal A-polynomial equations, which immediately follows after representing them in terms of the Duchon grammar. Moreover, these extremal A-polynomial equations encode Donaldson-Thomas invariants, which provides an interesting example of algebraicity of generating functions of these invariants. We also find a quantum generalization of these statements, i.e. a relation between motivic quiver generating functions, quantum extremal knot invariants, and $q$-weighted path counting. Finally, in the case of the unknot, we generalize this correspondence to the full HOMFLY-PT invariants and counting of Schr\"oder paths.

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Cited by 1 Pith paper

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  1. On explicit formulae of LMOV invariants

    hep-th 2019-08 reject novelty 4.0 of 10

    The paper derives explicit formulas for LMOV invariants of the framed unknot, but the multi-hole formula (29) is wrong as written.

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