English

Probing M-theory with tetrahedron instantons

High Energy Physics - Theory 2023-11-28 v4 Mathematical Physics math.MP

Abstract

The duality between type IIA superstring theory and M-theory enables us to lift bound states of D00-branes and nn parallel D66-branes to M-theory compactified on an nn-centered multi-Taub-NUT space TNn\mathbb{TN}_{n}. Accordingly, the rank nn K-theoretic Donaldson-Thomas invariants of C3\mathbb{C}^{3} are connected with the index of M-theory on C3×TNn\mathbb{C}^{3}\times\mathbb{TN}_{n}. In this paper, we extend this connection by considering intersecting D66-branes. In the presence of a suitable Neveu-Schwarz BB-field, the system preserves two supercharges. This system is T-dual to the configuration of tetrahedron instantons which we introduced in \cite{Pomoni:2021hkn}. We conjecture a closed-form expression for the K-theoretic tetrahedron instanton partition function, which is the generating function of the D00-D66 partition functions. We find that the tetrahedron instanton partition function coincides with the partition function of the magnificent four model for special values of the parameters, leading us to conjecture that our system of intersecting D66-branes can be obtained from the annihilation of D88-branes and anti-D88-branes. Remarkably, the K-theoretic tetrahedron instanton partition function allows an interpretation in terms of the index of M-theory on a noncompact Calabi-Yau fivefold which is related to a superposition of Kaluza-Klein monopoles. The dimensional reduction of the system allows us to express the cohomological tetrahedron instanton partition function in terms of the MacMahon function, generalizing the correspondence between Gromov-Witten invariants and Donaldson-Thomas invariants for Calabi-Yau threefolds.

Keywords

Cite

@article{arxiv.2306.06005,
  title  = {Probing M-theory with tetrahedron instantons},
  author = {Elli Pomoni and Wenbin Yan and Xinyu Zhang},
  journal= {arXiv preprint arXiv:2306.06005},
  year   = {2023}
}

Comments

23 pages; v2: additional references and minor corrections; v3: minor changes; v4: version to appear in JHEP

R2 v1 2026-06-28T11:01:11.910Z