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Perturbative linearization of super-Yang-Mills theories in general gauges

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arxiv 2104.06017 v2 pith:NM6SFLS2 submitted 2021-04-13 hep-th

classification hep-th
keywords gaugeordertransformationgaugeshypersurfacelandaunon-linearnon-local
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Supersymmetric Yang-Mills theories can be characterized by a non-local and non-linear transformation of the bosonic fields (Nicolai map) mapping the interacting functional measure to that of a free theory, such that the Jacobi determinant of the transformation equals the product of the fermionic determinants obtained by integrating out the gauginos and ghosts at least on the gauge hypersurface. While this transformation has been known so far only for the Landau gauge and to third order in the Yang-Mills coupling, we here extend the construction to a large class of (possibly non-linear and non-local) gauges, and exhibit the conditions for all statements to remain valid off the gauge hypersurface. Finally, we present explicit results to second order in the axial gauge and to fourth order in the Landau gauge.

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  1. The coupling flow for supergravity

    hep-th 2026-07 conditional novelty 6.0 of 10

    The superconformal formulation of four-dimensional supergravity yields a coupling flow operator that is regular at zero gravitational coupling, clearing two of three obstacles to a Nicolai map.

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