English

Commutative families in $W_\infty$, integrable many-body systems and hypergeometric $\tau$-functions

High Energy Physics - Theory 2023-09-20 v3 Mathematical Physics math.MP

Abstract

We explain that the set of new integrable systems generalizing the Calogero family and implied by the study of WLZZ models, which was described in arXiv:2303.05273, is only the tip of the iceberg. We provide its wide generalization and explain that it is related to commutative subalgebras (Hamiltonians) of the W1+W_{1+\infty} algebra. We construct many such subalgebras and explain how they look in various representations. We start from the even simpler ww_\infty contraction, then proceed to the one-body representation in terms of differential operators on a circle, further generalizing to matrices and in their eigenvalues, in finally to the bosonic representation in terms of time-variables. Moreover, we explain that some of the subalgebras survive the β\beta-deformation, an intermediate step from W1+W_{1+\infty} to the affine Yangian. The very explicit formulas for the corresponding Hamiltonians in these cases are provided. Integrable many-body systems generalizing the rational Calogero model arise in the representation in terms of eigenvalues. Each element of W1+W_{1+\infty} algebra gives rise to KP/Toda τ\tau-functions. The hidden symmetry given by the families of commuting Hamiltonians is in charge of the special, (skew) hypergeometric τ\tau-functions among these.

Keywords

Cite

@article{arxiv.2306.06623,
  title  = {Commutative families in $W_\infty$, integrable many-body systems and hypergeometric $\tau$-functions},
  author = {A. Mironov and V. Mishnyakov and A. Morozov and A. Popolitov},
  journal= {arXiv preprint arXiv:2306.06623},
  year   = {2023}
}

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43 pages