Abstract
For three-dimensional ABJ(M) theories and \( \mathcal{N}=4 \) Chern-Simons-matter quiver theories, we construct two sets of 1/2 BPS Wilson loop operators by applying the Higgsing procedure along independent directions of the moduli space, and choosing different massive modes. For theories whose dual M-theory description is known, we also determine the corresponding spectrum of 1/2 BPS M2-brane solutions. We identify the supercharges in M-theory and field theory, as well as the supercharges preserved by M2-/anti-M2-branes and 1/2 BPS Wilson loops. In particular, in \( \mathcal{N}=4 \) orbifold ABJM theory we find pairs of different 1/2 BPS Wilson loops that preserve exactly the same set of supercharges. In field theory they arise by Higgsing with the choice of either particles or antiparticles, whereas in the dual description they correspond to a pair of M2-/anti-M2-branes localized at different positions in the compact space. This result enlightens the origin of classical Wilson loop degeneracy in these theories, already discussed in arXiv:1506.07614. A discussion on possible scenarios that emerge by comparison with localization results is included.
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Lietti, M., Mauri, A., Penati, S. et al. String theory duals of Wilson loops from Higgsing. J. High Energ. Phys. 2017, 30 (2017). https://doi.org/10.1007/JHEP08(2017)030
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DOI: https://doi.org/10.1007/JHEP08(2017)030