Abstract

Candidate counterterms break E7 type U-duality symmetry of mathcal{N} ≥ 5 supergravity theories in four dimensions [1, 2]. A proposal was made in [3] to restore it, starting with a double set of vector fields and argued that a supersymmetric extension of their proposal should exist. We show that the extra vectors, needed for the deformation, can not be auxiliary fields in an eventual off-shell formulation of mathcal{N} ≥ 5 supergravity, assuming that such a formulation exists. Furthermore we show that these extra vector fields can not be dynamical either since that changes the unitary supermultiplets underlying these theories and requires one to go beyond the standard framework of extended simple supergravities. To show this we list all relevant unitary conformal supermultiplets of SU(2, 2| mathcal{N} + n). We find that doubling of vectors consistent with linearized supersymmetry requires to change the number of scalars, violating the coset structure of the theory, and also to add a finite number of higher spin fields, which do not admit consistent couplings to theories with spins ≤ 2. Thus, the proposed duality restoring deformation along the lines of [3] can not be implemented within the standard framework of extended supergravity theories. We argue therefore that, in the absence of anomalies, E7 type duality together with supersymmetry, might protect mathcal{N} ≥ 5 supergravity from UV divergences, in particular, mathcal{N} = 5 supergravity at 4 loops in d=4.

Highlights

  • The R-symmetry group SU(8) in N = 8 supergravity

  • We find that doubling of vectors consistent with linearized supersymmetry requires to change the number of scalars, violating the coset structure of the theory, and to add a finite number of higher spin fields, which do not admit consistent couplings to theories with spins ≤ 2

  • In the absence of anomalies, E7 type duality together with supersymmetry, might protect N ≥ 5 supergravity from UV divergences, in particular, N = 5 supergravity at 4 loops in d=4

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Summary

Source of deformation proposal

The doubling of independent vectors versus physical ones is a cornerstone in the E7(7) duality covariant form of the deformation in N = 8 theory proposed in [3] In their notation a duality doublet F m consists of two sets of 28 Maxwell field strengths. The quaternionic magical supergravity has the same bosonic field content as the N = 6 supergravity but with a different fermionic spectrum It has SO∗(12) as its U-duality group under which 16 vector field strengths, including the graviphoton, and their magnetic duals transform in the 32 dimensional spinor representation. Off-shell formulation of N = 2 quaternionic magical supergravity can not have auxiliary vector fields transforming in the 15 + 1 dimensional representation of the isotropy group U(6) of its scalar manifold SO∗(12)/U(6). We will study below all options to realize linear supersymmetry with the doubled number of dynamical vectors in the multiplets

Source of deformation and supersymmetry
Superfields
Discussion
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