Dimers, orientifolds and stability of supersymmetry breaking vacua

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Abstract

We study (orientifolded) toric Calabi-Yau singularities in search for D-brane configurations which lead to dynamical supersymmetry breaking at low energy. By exploiting dimer techniques we are able to determine that while most realizations lead to a Coulomb branch instability, a rather specific construction admits a fully stable supersymmetry breaking vacuum. We describe the geometric structure that a singularity should have in order to host such a construction, and present its simplest example, the Octagon.

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Argurio, R., Bertolini, M., Franco, S., García-Valdecasas, E., Meynet, S., Pasternak, A., & Tatitscheff, V. (2021). Dimers, orientifolds and stability of supersymmetry breaking vacua. Journal of High Energy Physics, 2021(1). https://doi.org/10.1007/JHEP01(2021)061

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