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The ${\cal N}=2$ Supersymmetric $w_{1+\infty}$ Symmetry in the Two-Dimensional SYK Models

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arxiv 2203.03105 v1 pith:PH2TTFDX submitted 2022-03-07 hep-th

classification hep-th
keywords lambdaalgebrainftylinearconstantsfracstructuresupersymmetric
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abstract

We identify the rank $(q_{syk}+1)$ of the interaction of the two-dimensional ${\cal N}=(2,2)$ SYK model with the deformation parameter $\lambda$ in the Bergshoeff, de Wit and Vasiliev(in 1991)'s linear $W_{\infty}[\lambda]$ algebra via $\lambda =\frac{1}{2(q_{syk}+1)}$ by using a matrix generalization. At the vanishing $\lambda$ (or the infinity limit of $q_{syk}$), the ${\cal N}=2$ supersymmetric linear $W_{\infty}^{N,N}[\lambda=0]$ algebra contains the matrix version of known ${\cal N}=2$ $W_{\infty}$ algebra, as a subalgebra, by realizing that the $N$-chiral multiplets and the $N$-Fermi multiplets in the above SYK models play the role of the same number of $\beta\, \gamma$ and $b\, c$ ghost systems in the linear $W_{\infty}^{N,N}[\lambda=0]$ algebra. For the nonzero $\lambda$, we determine the complete ${\cal N}=2$ supersymmetric linear $W_{\infty}^{N,N}[\lambda]$ algebra where the structure constants are given by the linear combinations of two different generalized hypergeometric functions having the $\lambda$ dependence. The weight-$1, \frac{1}{2}$ currents occur in the right hand sides of this algebra and their structure constants have the $\lambda$ factors. We also describe the $\lambda =\frac{1}{4}$ (or $q_{syk}=1$) case in the truncated subalgebras by calculating the vanishing structure constants.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 10 citations worldwide. Full citation record

  1. Multi-Particle Contributions to the Celestial Algebra in the ${\cal N}=8$ Supergravity

    hep-th 2026-07 conditional novelty 5.0 of 10

    Multi-particle OPEs of single-particle celestial operators with two-particle operators in N=8 supergravity yield ninety-five (anti)commutators of the soft current algebra plus amplitude relations.

  2. A Supersymmetric $w_{1+\infty}$ Symmetry, the Extended Supergravity and the Celestial Holography

    hep-th 2025-01 reject novelty 5.0 of 10

    An N=4 supersymmetric w_{1+∞} algebra at λ=1/4 is proposed as the celestial soft current algebra of N=4 SO(4) supergravity, with truncations covering N=2,3 and matter-coupled cases.

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