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December 3, 2025Journal of High Energy Physics14 citationsOpen Access

Einstein gravity from a matrix integral. Part I

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SKShota KomatsuAMAdrien Martina

Key Points

  • The analysis shows the correspondence of supergravity solutions to fuzzy sphere vacua.
  • Identified with isometry of SO(7) and SO(3), maintaining 16 supersymmetries.
  • Quantizing the fluxes provides insights into the construction of backreacted geometries.
  • Findings may enhance understanding of gravitational theories via matrix models.

Abstract

A bstract We construct backreacted geometries dual to the supersymmetric mass deformation of the IKKT matrix model. They are Euclidean type IIB supergravity solutions given in terms of an electrostatic potential, having SO(7) × SO(3) isometry and 16 supersymmetries. Quantizing the fluxes, we find that the supergravity solutions are in one-to-one correspondence with fuzzy sphere vacua of the matrix model.

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Cite This Study

Komatsu et al. (2025) studied this question.

synapsesocial.com/papers/694025912d562116f28fe7fahttps://doi.org/10.1007/jhep12(2025)029
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