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February 19, 2026Journal of High Energy Physics3 citationsOpen Access

Trombone gaugings of five-dimensional maximal supergravity

ÓVÓscar Agudelo Varela

Key Points

  • The central aim is to classify maximal gauged supergravities in five dimensions and explore their properties.
  • Described gauge groups contained in ℝ + × E 6(6)
  • Presented equations of motion and supersymmetry variations to lowest order in fermions
  • Classified theories based on a maximal subgroup of ℝ + × E 6(6)
  • Computed mass matrices and analyzed supersymmetric anti-de Sitter vacua in a concrete theory
  • Uncovered a new family of maximal gauged supergravities
  • Identified supersymmetric anti-de Sitter vacua connected to M5-brane field theory
  • Computed mass spectra for these vacua within gauged supergravity

Abstract

A bstract The maximal gauged supergravities in five spacetime dimensions with gauge groups contained in ℝ + × E 6(6) are described. The E 6(6) factor is the duality group of ungauged maximal supergravity and ℝ + is the scaling symmetry of the five-dimensional metric, usually called the trombone symmetry. The equations of motion and supersymmetry variations for these supergravities are given to lowest order in fermions, and the mass matrices are provided. Then, the theories with gauge groups contained in a maximal subgroup of ℝ + × E 6(6) are classified, and a new family of such supergravities uncovered. For a concrete theory in this class, some supersymmetric anti-de Sitter vacua are found and their mass spectra computed within the gauged supergravity. These vacua are argued to be related to superconformal phases of the M5-brane field theory.

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Cite This Study

Óscar Agudelo Varela (2026) studied this question.

synapsesocial.com/papers/6996a8c7ecb39a600b3efd1dhttps://doi.org/10.1007/jhep02(2026)163
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